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张现仁

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研究方向 :
教授 
部门 : 化学工程学院
学历: 博士研究生毕业
ORCID:
DBLP:

个人简介

教育经历

入学时间 毕业时间 学位授予单位 学历
1998-09-01 2001-06-01 北京化工大学 博士研究生毕业
1995-09-01 1998-07-01 合肥工业大学 硕士研究生毕业

工作经历

起始年月 截止年月 所在单位名称
2005-03-01 至今 北京化工大学
2003-03-23 2005-03-01 法国里昂高师
2001-07-01 2003-03-01 北京化工大学
1994-09-01 1995-07-01 安庄中学
1991-09-01 1992-07-01 安庄中学
1989-09-01 1991-07-01 莒县库山乡中心初中

社会职务

社会活动

研究领域

本科生

课程名称 开课学年 课程总学时 选课人数 课程性质
化工热力学 2023 48 67 专业必修
化工热力学 2022 48 66 专业必修
化工热力学 2021 48 78 专业必修
化工热力学 2020 48 56 专业必修
化工热力学 2019 48 99 专业必修

研究生

课程名称 开课学年 总学时 开课方式
界面热力学 2024 32 A公共基础课
高等化工热力学(留学生) 2024 48 A公共基础课
界面热力学 2023 32 A公共基础课
界面热力学 2022 32 A公共基础课
界面热力学 2021 32 A公共基础课
界面热力学 2020 32 A公共基础课
分子模拟方法 2016 40 D专业选修课
分子模拟方法 2014 40 D专业选修课

校级项目

纵向项目

横向项目

论文信息

[+][-]代表性论文
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2030年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2029年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2028年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2027年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2026年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2025年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2024年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-] 2023年
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01
[+][-]2023年之前
  • 1. DOI Zhou, Yuanhao;Li, Shunying;Sun, Xiaoya;Wang, Jun;Chen, Haoxiang;Xu, Qiangqiang;Ye, Hong;Li, Shuangyang;Shi, Shengpeng;Zhang, Xianren
    Preparation of novel magnetic ethylene glycol dimethacrylate-based molecularly imprinted polymer for rapid adsorption of phthalate esters from ethanol aqueous solution[期刊论文],Environmental Pollution,2024-11-15
  • 2. DOI Yu, Zhaoyang;Huang, Mengyuan;Zhang, Xianren
    Substrate deformability and applied normal force are coupled to change nanoscale friction[期刊论文],NANOSCALE ADVANCES,2024-09-24
  • 3. DOI Chen, Shan;Zhang, Hongguang;Guo, Zhenjiang;Pagonabarraga, Ignacio;Zhang, Xianren
    A capillary-induced negative pressure is able to initiate heterogeneous cavitation[期刊论文],Soft Matter,2024-02-28
  • 4. DOI Guo, Xing;Yang, Lin;Deng, Chaofan;Ren, Luyao;Li, Shixin;Zhang, Xianren;Zhao, Jian;Yue, Tongtao
    Nanoparticles traversing the extracellular matrix induce biophysical perturbation of fibronectin depicted by surface chemistry[期刊论文],Nanoscale,2024-02-21
  • 5. DOI Zhou, Youbin;Huang, Mengyuan;Tian, Falin;Shi, Xinghua;Zhang, Xianren
    Einstein-Stokes relation for small bubbles at the nanoscale[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2024-02-07
  • 6. DOI Ma, Yunqing;Huang, Mengyuan;Mutschke, Gerd;Zhang, Xianren
    Nucleation of surface nanobubbles in electrochemistry: Analysis with nucleation theorem[期刊论文],Journal of Colloid and Interface Science,2024-01-15
  • 7. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Stable bulk nanobubbles can be regarded as gaseous analogues of microemulsions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2023-12-01
  • 8. DOI Chen, Changsheng;Zhang, Hongguang;Zhang, Xianren
    Synergism of Surfactant Mixture in Lowering Vapor-Liquid Interfacial Tension[期刊论文],LANGMUIR,2023-08-22
  • 9. DOI Chen, Xin;Chen, Wei;Zhang, Xianren;Cheng, Daojian;Ren, Ying
    The study on the dielectric properties of structural changes of surfactant aqueous solution by molecular dynamics simulation[期刊论文],Journal of Molecular Liquids,2023-06-01
  • 10. DOI Qiu, Jiade;Chen, Xin;Wu, Dengfeng;Zhang, Xianren;Cheng, Daojian
    One-dimensional analysis method of pulsatile blood flow in arterial network for REBOA operations[期刊论文],Computers in Biology and Medicine,2023-06-01
  • 11. DOI Yang, Xiaohua;Liu, Xiangyang;Han, Jinhui;Liu, Zhiping;Zhang, Xianren
    Tuning Fluorination of Carbonates for Lithium-Ion Batteries: A Theoretical Study[期刊论文],Journal of Physical Chemistry B,2023-04-06
  • 12. DOI Liu, Meng;Farrell, James D.;Zhang, Xianren;Dobnikar, Jure;Angioletti-Uberti, Stefano
    The role of surface topography in the self-assembly of polymeric surfactants[期刊论文],Soft Matter,2023-01-20
  • 13. DOI Yu, Kunxiang;Liu, Junhao;Gong, Xuzhong;Zhang, Xianren;Wang, Zhi
    Rationally designed high-conductivity Hydrangea macrophylla-like Si@NiO@Ni/C composites as a high-performance anode material for lithium-ion batteries[期刊论文],Electrochemical Science Advances,2022-12-01
  • 14. DOI Zhu, Mengyu;Huang, Liyang;Zhang, Bo;Chen, Shan;Zhang, Hongguang;Zhang, Xianren;Li, Dawei;Yao, Yin;Peng, Zhilong;Chen, Shaohua;Cao, Dapeng
    Recent progress in optimal design of superhydrophobic surfaces[期刊论文],APL MATERIALS,2022-11-01
  • 15. DOI Yu, Zhaoyang;Li, Jing;Zhang, Xianren
    A new hypothesis for cavitation nucleation in gas saturated solutions: Clustering of gas molecules lowers significantly the surface tension[期刊论文],Chinese Journal of Chemical Engineering,2022-10-01
  • 16. DOI Bai, Yang;Wang, Yaqin;Qiao, Zelong;Yang, Yongping;Deng, Luanjie;Li, Chuanjie;Chen, Xiudong;Wang, Shitao;Huang, Yan;Zhang, Xianren;Cao, Dapeng
    Facile synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn-air batteries, and overall water splitting[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2022-08-04
  • 17. DOI Zhou, Youbin;Cao, Dapeng;Zhang, Xianren
    Degradation Mechanism of Micro-Nanobubble Technology for Organic Pollutants in Aqueous Solutions[期刊论文],NANOMATERIALS,2022-08-01
  • 18. DOI Chen, Shan;Guo, Zhenjiang;Zhang, Hongguang;Pagonabarraga, Ignacio;Zhang, Xianren
    Maximizing friction by liquid flow clogging in confinement[期刊论文],European Physical Journal E,2022-07-01
  • 19. DOI Wang, Jiawei;Huang, Yan;Zhang, Xianren;Cao, Dapeng;Wang, Shitao
    Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[期刊论文],Sustainable Energy and Fuels,2022-04-01
  • 20. DOI Guo, Zhenjiang;Zhang, Hongguang;Zhang, Xianren;Doi, Masao
    Oscillating state transition in pinned nanobubbles with coupled fluctuations[期刊论文],Physical Review E,2021-12-01
  • 21. DOI Ma, Yunqing;Guo, Zhenjiang;Chen, Qianjin;Zhang, Xianren
    Dynamic Equilibrium Model for Surface Nanobubbles in Electrochemistry[期刊论文],LANGMUIR,2021-03-02
  • 22. DOI Tang, Xu;Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren;Li, Jing;Cao, Dapeng
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],CHINESE JOURNAL OF CHEMICAL ENGINEERING,2021-03-01
  • 23. DOI 杨茂发;李敬;张现仁
    纳米级超声造影剂的理论研究进展[期刊论文],净水技术,2021-02-25
  • 24. DOI Zhang, Hongguang;Zhang, Xianren
    Reply to the ‘Comment on “Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets”’ by A. I. Rusanov, D. V. Tatyanenko and A. K. Shchekin, Nanoscale, 2020, DOI:10.1039/ D0NR00232A[期刊论文],Nanoscale,2021-02-21
  • 25. DOI Ma, Yunqing;Chen, Changsheng;Zhang, Xianren
    Surface active agents stabilize nanodroplets and enhance haze formation*[期刊论文],CHINESE PHYSICS B,2021-01-01
  • 26. DOI Zhang, Hongguang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-11-17
  • 27. DOI 马韵箐,陈昌盛,张现仁
    Surface active agents stabilize nanodroplets and enhance haze formation[期刊论文],Chinese Physics B,2020-11-13
  • 28. DOI 汤旭,张红光,郭振江,李敬,张现仁,曹达鹏
    Multiplicity of thermodynamic states of van der Waals gas in nanobubbles[期刊论文],Chinese Journal of Chemical Engineering,2020-10-31
  • 29. DOI 陈昌盛,张现仁,曹达鹏
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],Green Energy and Environment,2020-10-31
  • 30. DOI 张红光,陈珊,张博,张现仁
    Inhibiting Ostwald Ripening by Scaffolding Droplets[期刊论文],LANGMUIR,2020-10-27
  • 31. DOI Chen, Changsheng;Zhang, Xianren;Cao, Dapeng
    Role of substrate softness in stabilizing surface nanobubbles[期刊论文],GREEN ENERGY & ENVIRONMENT,2020-07-01
  • 32. DOI Zhang, Hongguang;Guo, Zhenjiang;Zhang, Xianren
    Surface enrichment of ions leads to the stability of bulk nanobubbles[期刊论文],SOFT MATTER,2020-06-21
  • 33. DOI Li, Shixin;Lv, Rujie;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Chen, Guang-Jin;Yue, Tongtao
    Design of Alanine-Rich Short Peptides as a Green Alternative of Gas Hydrate Inhibitors: Dual Methyl Group Docking for Efficient Adsorption on the Surface of Gas Hydrates[期刊论文],ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020-03-16
  • 34. DOI Li, Shixin;Yan, Zengshuai;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    How a lipid bilayer membrane responds to an oscillating nanoparticle: Promoted membrane undulation and directional wave propagation[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2020-03-01
  • 35. DOI Chen, Changsheng;Li, Jing;Zhang, Xianren
    The existence and stability of bulk nanobubbles: a long-standing dispute on the experimentally observed mesoscopic inhomogeneities in aqueous solutions[期刊论文],COMMUNICATIONS IN THEORETICAL PHYSICS,2020-03-01
  • 36. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Radial aggregation of proteins prevails over axial aggregation on membrane tubes[期刊论文],NANOSCALE,2020-02-07
  • 37. DOI Guo, Zhenjiang;Zhang, Xianren
    Enhanced fluctuation for pinned surface nanobubbles[期刊论文],PHYSICAL REVIEW E,2019-11-18
  • 38. DOI Yan, Zengshuai;Wu, Zeming;Li, Shixin;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Curvature-mediated cooperative wrapping of multiple nanoparticles at the same and opposite membrane sides[期刊论文],NANOSCALE,2019-11-14
  • 39. DOI Li, Zhi;Liao, Kai;Qin, Hui-Bo;Chen, Junli;Ren, Liangliang;Li, Fengguang;Zhang, Xianren;Liu, Bei;Chen, Guangjin
    The gas-adsorption mechanism of kinetic hydrate inhibitors[期刊论文],AICHE JOURNAL,2019-09-01
  • 40. DOI Liu, Yuchi;Li, Shixin;Liu, Xuejuan;Sun, Hainan;Yue, Tongtao;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Design of Small Nanoparticles Decorated with Amphiphilic Ligands: Self-Preservation Effect and Translocation into a Plasma Membrane[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2019-07-10
  • 41. DOI Guo, Zhenjiang;Wang, Xian;Zhang, Xianren
    Stability of Surface Nanobubbles without Contact Line Pinning[期刊论文],LANGMUIR,2019-06-25
  • 42. DOI Wang, Hanqing;Mohoric, Tomaz;Zhang, Xianren;Dobnikar, Jure;Horbach, Juergen
    Active microrheology in two-dimensional magnetic networks[期刊论文],SOFT MATTER,2019-06-14
  • 43. DOI Wang, Xian;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    Curvature dependence of Henry's law constant and nonideality of gas equilibrium for curved vapor-liquid interfaces[期刊论文],AICHE JOURNAL,2019-06-01
  • 44. DOI Li, Shixin;Lv, Rujie;Wu, Yining;Huang, Fang;Zhang, Xianren;Yue, Tongtao
    Size-, Aggregation-, and Oxidization-Dependent Perturbation of Methane Hydrate by Graphene Nanosheets Revealed by Molecular Dynamics Simulations[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2019-05-23
  • 45. DOI 王昱焜;张现仁;曹达鹏
    利用κ-K?hler理论研究大气气溶胶的吸湿特性[期刊论文],化工学报,2019-04-19
  • 46. DOI Li, Shixin;Yan, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Hu, Guoqing;Zhang, Xianren;Yue, Tongtao
    Directional and Rotational Motions of Nanoparticles on Plasma Membranes as Local Probes of Surface Tension Propagation[期刊论文],LANGMUIR,2019-04-16
  • 47. DOI Yue, Tongtao;Zhou, Hongyu;Sun, Hainan;Li, Shixin;Zhang, Xianren;Cao, Dapeng;Yi, Xin;Yan, Bing
    Why are nanoparticles trapped at cell junctions when the cell density is high?[期刊论文],NANOSCALE,2019-04-14
  • 48. DOI Li, Ye;Zhang, Xianren;Lin, Jinxing;Li, Ruili;Yue, Tongtao
    Extracting lipid vesicles from plasma membranes via self-assembly of clathrin-inspired scaffolding nanoparticles[期刊论文],COLLOIDS AND SURFACES B-BIOINTERFACES,2019-04-01
  • 49. DOI Li, Shixin;Yang, Zengshuai;Luo, Zhen;Xu, Yan;Huang, Fang;Zhang, Xianren;Yi, Xin;Yue, Tongtao
    Mechanics of the Formation, Interaction, and Evolution of Membrane Tubular Structures[期刊论文],BIOPHYSICAL JOURNAL,2019-03-05
  • 50. DOI Zhang, Hongguang;Zhang, Xianren
    Size dependence of bubble wetting on surfaces: breakdown of contact angle match between small sized bubbles and droplets[期刊论文],NANOSCALE,2019-02-14
  • 51. DOI Xu, Peng;Yu, Yunhua;Guo, Zhenjiang;Zhang, Xianren;Li, Gang;Yang, Xiaoping
    Evaluation of composite interfacial properties based on carbon fiber surface chemistry and topography: Nanometer-scale wetting analysis using molecular dynamics simulation[期刊论文],COMPOSITES SCIENCE AND TECHNOLOGY,2019-02-08
  • 52. DOI Gao, Xinli;Hong, Song;Liu, Zhiping;Yue, Tongtao;Dobnikar, Jure;Zhang, Xianren
    Membrane potential drives direct translocation of cell-penetrating peptides[期刊论文],Nanoscale,2019-01-28
  • 53. DOI Zou, Jintao;Zhang, Hongguang;Guo, Zhenjiang;Liu, Yawei;Wei, Jiachen;Huang, Yan;Zhang, Xianren
    Surface Nanobubbles Nucleate Liquid Boiling[期刊论文],LANGMUIR,2018-11-20
  • 54. DOI Zhang, Hongguang;Guo, Zhenjiang;Chen, Shan;Zhang, Bo;Zhang, Xianren
    Microdroplet targeting induced by substrate curvature[期刊论文],CHINESE PHYSICS B,2018-09-01
  • 55. DOI Zhang, Hongguang;Chen, Shan;Guo, Zhenjiang;Liu, Yawei;Bresme, Fernando;Zhang, Xianren
    Contact Line Pinning Effects Influence Determination of the Line Tension of Droplets Adsorbed on Substrates[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2018-08-02
  • 56. DOI Xu, Yan;Li, Shixin;Luo, Zhen;Ren, Hao;Zhang, Xianren;Huang, Fang;Zuo, Yi Y.;Yue, Tongtao
    Role of Lipid Coating in the Transport of Nanodroplets across the Pulmonary Surfactant Layer Revealed by Molecular Dynamics Simulations[期刊论文],LANGMUIR,2018-07-31
  • 57. DOI Li, Jing;Zhang, Xianren;Cao, Dapeng
    Decoupling of bilayer leaflets under gas supersaturation: nitrogen nanobubbles in a membrane and their implication in decompression sickness[期刊论文],JOURNAL OF PHYSICS D-APPLIED PHYSICS,2018-05-10
  • 58. DOI Li, Jing;Liu, Xiuhua;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Cao, Dapeng
    Spontaneous insertion of GPI anchors into cholesterol-rich membrane domains[期刊论文],AIP ADVANCES,2018-05-01
  • 59. DOI 李敬,刘蓓,张现仁,曹达鹏,陈光进
    Hydrogen bond networks of glycol molecules on ZIF-8 surfaces as semipermeable films for efficient carbon capture[期刊论文],The Journal of Physical Chemistry C,2018-03-01
  • 60. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan;Shao, Yingfeng
    Nanobubbles in confined solution: Generation, contact angle, and stability[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2018-02-14
  • 61. DOI Tian, Falin;Yue, Tongtao;Dong, Wei;Yi, Xin;Zhang, Xianren
    Size-dependent formation of membrane nanotubes: continuum modeling and molecular dynamics simulations[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018-02-07
  • 62. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Frenkel, Daan;Dobnikar, Jure;Zhang, Xianren
    What experiments on pinned nanobubbles can tell about the critical nucleus for bubble nucleation[期刊论文],EUROPEAN PHYSICAL JOURNAL E,2018-01-31
  • 63. DOI 刘学娟,田发林,岳同涛,张现仁,仲崇立
    Pulling force and surface tension drive membrane fusion[期刊论文],The Journal of Chemical Physics,2018-01-05
  • 64. DOI Liu, Yawei;Zhang, Xianren
    A review of recent theoretical and computational studies on pinned surface nanobubbles[期刊论文],CHINESE PHYSICS B,2018-01-01
  • 65. DOI Luo, Zhen;Li, Shixin;Xu, Yan;Ren, Hao;Zhang, Xianren;Hu, Guoqing;Huang, Fang;Yue, Tongtao
    Extracting pulmonary surfactants to form inverse micelles on suspended graphene nanosheets[期刊论文],ENVIRONMENTAL SCIENCE-NANO,2018-01-01
  • 66. DOI Liu, Yawei;Ganti, Raman;Burton, Hugh G.A.;Zhang, Xianren;Wang, Wenchuan;Frenkel, Daan
    Microscopic Marangoni Flows Cannot Be Predicted on the Basis of Pressure Gradients[期刊论文],Physical Review Letters,2017-11-29
  • 67. DOI Li, Jing;Liu, Bei;Zhang, Xianren;Cao, Dapeng;Chen, Guangjin
    Hydrogen Bond Networks of Glycol Molecules on ZIF-8 Surfaces as Semipermeable Films for Efficient Carbon Capture[期刊论文],Journal of Physical Chemistry C,2017-11-16
  • 68. DOI Li, Shixin;Luo, Zhen;Xu, Yan;Ren, Hao;Deng, Li;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Interaction pathways between soft lipid nanodiscs and plasma membranes: A molecular modeling study[期刊论文],BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES,2017-10-01
  • 69. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Zhang, Xianren
    How nanobubbles lose stability: Effects of surfactants[期刊论文],APPLIED PHYSICS LETTERS,2017-09-25
  • 70. DOI Xiao, Qianxiang;Liu, Yawei;Guo, Zhenjiang;Liu, Zhiping;Lohse, Detlef;Zhang, Xianren
    Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study[期刊论文],LANGMUIR,2017-08-15
  • 71. DOI Xu, Yan;Luo, Zhen;Li, Shixin;Li, Weiguo;Zhang, Xianren;Zuo, Yi Y.;Huang, Fang;Yue, Tongtao
    Perturbation of the pulmonary surfactant monolayer by single-walled carbon nanotubes: a molecular dynamics study[期刊论文],NANOSCALE,2017-08-07
  • 72. DOI Xu, Yan;Deng, Li;Ren, Hao;Zhang, Xianren;Huang, Fang;Yue, Tongtao
    Transport of nanoparticles across pulmonary surfactant monolayer: a molecular dynamics study[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2017-07-21
  • 73. DOI Gao, Xinli;Yue, Tongtao;Tian, Falin;Liu, Zhiping;Zhang, Xianren
    Erythrocyte membrane skeleton inhibits nanoparticle endocytosis[期刊论文],AIP ADVANCES,2017-06-01
  • 74. DOI Hu, Yangxu;Liu, Zhiping;Yuan, Xigang;Zhang, Xianren
    Molecular mechanism for liquid-liquid extraction: Two-film theory revisited[期刊论文],AICHE JOURNAL,2017-06-01
  • 75. DOI Liu,Yawei;Zhang,Xianren
    Molecular dynamics simulation of nanobubble nucleation on rough surfaces[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2017-04-28
  • 76. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Ultrashort Single-Walled Carbon Nanotubes Insert into a Pulmonary Surfactant Monolayer via Self-Rotation: Poration and Mechanical Inhibition[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2017-04-06
  • 77. DOI Chen, Shan;Zhang, Bo;Gao, Xiangyu;Liu, Zhiping;Zhang, Xianren
    Direction Dependence of Adhesion Force for Droplets on Rough Substrates[期刊论文],LANGMUIR,2017-03-07
  • 78. DOI Li, Ye;Yuan, Bing;Yang, Kai;Zhang, Xianren;Yan, Bing;Cao, Dapeng
    Counterintuitive cooperative endocytosis of like-charged nanoparticles in cellular internalization : computer simulation and experiment[期刊论文],NANOTECHNOLOGY,2017-02-24
  • 79. DOI Lu, Xue-Mei;Yuan, Bing;Zhang, Xian-ren;Yang, Kai;Ma, Yu-qiang
    Molecular modeling of transmembrane delivery of paclitaxel by shock waves with nanobubbles[期刊论文],APPLIED PHYSICS LETTERS,2017-01-09
  • 80. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Luo, Zhen;Zhang, Xianren;Huang, Fang
    Surface patterning of single-walled carbon nanotubes enhances their perturbation on a pulmonary surfactant monolayer: frustrated translocation and bilayer vesiculation[期刊论文],RSC ADVANCES,2017-01-01
  • 81. DOI Liu, Yawei;Zhang, Xianren
    Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2016-12-21
  • 82. DOI Wei, Jiachen;Zhang, Xianren;Song, Fan
    Deformation of Surface Nanobubbles Induced by Substrate Hydrophobicity[期刊论文],LANGMUIR,2016-12-13
  • 83. DOI Zhang, Bo;Chen, Xuemei;Dobnikar, Jure;Wang, Zuankai;Zhang, Xianren
    SpontaneousWenzel to Cassie dewetting transition on structured surfaces[期刊论文],PHYSICAL REVIEW FLUIDS,2016-11-29
  • 84. DOI Su, Gaoxing;Zhou, Xiaofei;Zhou, Hongyu;Li, Ye;Zhang, Xianren;Liu, Yin;Cao, Dapeng;Yan, Bing
    Size-Dependent Facilitation of Cancer Cell Targeting by Proteins Adsorbed on Nanoparticles[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2016-11-09
  • 85. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qiandang;Zhang, Xianren
    Hidden Nanobubbles in Undersaturated Liquids[期刊论文],LANGMUIR,2016-11-01
  • 86. DOI Yue, Tongtao;Li, Shixin;Xu, Yan;Zhang, Xianren;Huang, Fang
    Interplay between Nanoparticle Wrapping and Clustering of Inner Anchored Membrane Proteins[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY B,2016-10-27
  • 87. DOI Tiana, Falin;Yue, Tongtao;Dong, Wei;Zhang, Xianren
    Membrane tube pearling induced by a coupling of osmotic pressure and nanoparticle adhesion[期刊论文],MOLECULAR PHYSICS,2016-09-01
  • 88. DOI Yue, Tongtao;Xu, Yan;Li, Shixin;Zhang, Xianren;Huang, Fang
    Lipid extraction mediates aggregation of carbon nanospheres in pulmonary surfactant monolayers[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-07-28
  • 89. DOI Li, Zhi;Liao, Kai;Liao, Feiyang;Xiao, Qianxiang;Jiang, Fei;Zhang, Xianren;Liu, Bei;Sun, Changyu;Chen, Guangjin
    Wetting and Spreading Behaviors of Nanodroplets : The Interplay Among Substrate Hydrophobicity , Roughness , and Surfactants[期刊论文],JOURNAL OF PHYSICAL CHEMISTRY C,2016-07-21
  • 90. DOI Liu, Jie;Zhang, Bo;Zhang, Xianren
    Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface[期刊论文],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2016-03-18
  • 91. DOI Guo, Zhenjiang;Liu, Yawei;Xiao, Qianxiang;Schoenherr, Holger;Zhang, Xianren
    Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles[期刊论文],LANGMUIR,2016-01-26
  • 92. DOI Yue, Tongtao;Xu, Yan;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    How tubular aggregates interact with biomembranes : wrapping , fusion and pearling[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-14
  • 93. DOI Zhang, Bo;Lei, Qing;Wang, Zuankai;Zhang, Xianren
    Droplets Can Rebound toward Both Directions on Textured Surfaces with a Wettability Gradient[期刊论文],LANGMUIR,2016-01-12
  • 94. DOI Yue, Tongtao;Tian, Falin;Sun, Mingbin;Zhang, Xianren;Huang, Fang
    Inter-tube adhesion mediates a new pearling mechanism[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2016-01-07
  • 95. DOI Li, Jianguo;Liu, Yawei;Jiang, Guangfeng;Zhang, Xianren
    Vapour-to-liquid nucleation in cone pores[期刊论文],MOLECULAR SIMULATION,2016-01-02
  • 96. DOI Liu, Xuejuan;Tian, Falin;Yue, Tongtao;Zhang, Xianren;Zhong, Chongli
    Exploring the shape deformation of biomembrane tubes with theoretical analysis and computer simulation[期刊论文],SOFT MATTER,2016-01-01
  • 97. DOI Wang, Shumeng;Li, Zhi;Liu, Bei;Zhang, Xianren;Yang, Qingyuan
    Molecular mechanisms for surfactant-aided oil removal from a solid surface[期刊论文],APPLIED SURFACE SCIENCE,2015-12-30
  • 98. DOI Bai, Dongsheng;Zhang, Diwei;Zhang, Xianren;Chen, Guangjin
    Origin of Self-preservation Effect for Hydrate Decomposition: Coupling of Mass and Heat Transfer Resistances[期刊论文],SCIENTIFIC REPORTS,2015-10-01
  • 99. DOI Zhang, Bo;Zhang, Xianren
    Elucidating Nonwetting of Re-Entrant Surfaces with Impinging Droplets[期刊论文],LANGMUIR,2015-09-01
  • 100. DOI Bai, Dongsheng;Chen, Guangjin;Zhang, Xianren;Sum, Amadeu K.;Wang, Wenchuan
    How Properties of Solid Surfaces Modulate the Nucleation of Gas Hydrate[期刊论文],SCIENTIFIC REPORTS,2015-07-31
  • 101. DOI Guo, Zhenjiang;Liu, Yawei;Lohse, Detlef;Zhang, Xuehua;Zhang, Xianren
    Stability of micro-Cassie states on rough substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2015-06-28
  • 102. DOI Li, Ye;Feng, Diwen;Zhang, Xianren;Cao, Dapeng
    Design strategy of cell-penetrating copolymers for high efficient drug delivery[期刊论文],BIOMATERIALS,2015-06-01
  • 103. DOI Gao, Xinli;Dong, Junjun;Zhang, Xianren
    The effect of nanoparticle size on endocytosis dynamics depends on membrane-nanoparticle interaction[期刊论文],MOLECULAR SIMULATION,2015-05-03
  • 104. DOI Guo, Zhenjiang;Liu, Yawei;Zhang, Xianren
    Constrained lattice density functional theory and its applications on vapor-liquid nucleations[期刊论文],SCIENCE BULLETIN,2015-02-01
  • 105. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    Nanoparticle hardness controls the internalization pathway for drug delivery[期刊论文],NANOSCALE,2015-01-01
  • 106. DOI Yue, Tongtao;Wang, Xiaojuan;Zhang, Xianren;Huang, Fang
    Molecular modeling of interaction between lipid monolayer and graphene nanosheets: implications for pulmonary nanotoxicity and pulmonary drug delivery[期刊论文],RSC ADVANCES,2015-01-01
  • 107. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane responses to the adsorption of rotating nanoparticles: promoted cell uptake and mechanical membrane rupture[期刊论文],SOFT MATTER,2015-01-01
  • 108. DOI Tian FaLin;Yue TongTao;Li Ye;Zhang XianRen
    Computer simulation studies on the interactions between nanoparticles and cell membrane[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 109. DOI Li ShuangYang;Zhang XianRen;Wang WenChuan
    Selective aggregation of membrane proteins by membrane-mediated interactions[期刊论文],SCIENCE CHINA-CHEMISTRY,2014-12-01
  • 110. DOI Tian, Falin;Zhang, Xianren;Dong, Wei
    How hydrophobic nanoparticles aggregate in the interior of membranes: A computer simulation[期刊论文],PHYSICAL REVIEW E,2014-11-04
  • 111. DOI Liu, Yawei;Zhang, Xianren
    A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-10-07
  • 112. DOI Liu, Huang;Zhang, Xianren;Wang, Wenchuan
    A hybrid absorption-adsorption method to efficiently capture carbon[期刊论文],NATURE COMMUNICATIONS,2014-10-01
  • 113. DOI Liu, Yawei;Wang, Jianjun;Zhang, Xianren;Wang, Wenchuan
    Contact line pinning and the relationship between nanobubbles and substrates[期刊论文],JOURNAL OF CHEMICAL PHYSICS,2014-02-07
  • 114. DOI Li, Ye;Zhang, Xianren;Cao, Dapeng
    A spontaneous penetration mechanism of patterned nanoparticles across a biomembrane[期刊论文],SOFT MATTER,2014-01-01
  • 115. DOI Yue, Tongtao;Feng, Diwen;Zhang, Xianren
    The interplay between the clustering of transmembrane proteins and coupling of anchored membrane proteins[期刊论文],MOLECULAR SIMULATION,2014-01-01
  • 116. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Membrane monolayer protrusion mediates a new nanoparticle wrapping pathway[期刊论文],SOFT MATTER,2014-01-01
  • 117. DOI Yue, Tongtao;Zhang, Xianren;Huang, Fang
    Molecular modeling of membrane tube pearling and the effect of nanoparticle adsorption[期刊论文],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2014-01-01
  • 118. DOI Yue, Tongtao;Zhang, Xianren
    Molecular modeling of the pathways of vesicle-membrane interaction[期刊论文],SOFT MATTER,2013-01-01
  • 119. DOI Zhang, Xianren;Wang, Wenchuan
    Square-well fluids in confined space with discretely attractive wall-fluid potentials: Critical point shift[期刊论文],Physical Review E - Statistical, Nonlinear, and Soft Matter Physics,2006-01-01

软件著作

专利

荣誉及奖励

  • 1. 化工中模型液体及纳米介孔材料的分子模拟 ,省部级科技奖励 ,一等奖
  • 2. 纳米多孔材料吸附特性的实验与分子模拟 ,省部级科技奖励 ,二等奖
  • 3. 注CO2置换开采天然气水合物机理与提高置换效率方法研究 ,2023-06-06 00:00:00 ,省部级科技奖励 ,二等奖
  • 4. 纳米气泡的成因和稳定机制研究 ,2024-09-01 00:00:00 ,其他 ,二等奖

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