朱威头像

朱威

副教授  博士研究生毕业

部门: 化学工程学院 研究方向: 能源电催化

电子邮箱: 2018500017@mail.buct.edu.cn 办公地址: 东校区科技大厦1204

ORCID: 0000-0002-0317-7229 DBLP:

10 访问

个人简介

朱威,北京化工大学化学工程学院副教授。2005年考入浙江大学化学系。2009年进入北京大学化学与分子工程学院攻读博士研究生(导师:张亚文教授、严纯华院士),并于20147月获得理学博士学位(无机化学专业)。研究生期间(2011-2012年),以访问学者身份前往美国圣母大学化学与生物化学系开展了为期一年的合金原位催化表征方面的合作研究。20159月至20184月在清华大学化学系(合作导师:陈晨副教授、李亚栋院士)从事与团簇、单原子催化相关的博士后研究工作。20185月入职北京化工大学化学工程学院,加入庄仲滨教授团队,获学校“C类引进人才计划”资助。目前主要从事与氢燃料电池和电解制氢技术相关的电催化剂、反应机理和器件工艺的研究工作,在Adv. Mater.ChemACS Catal.等国际核心期刊上发表SCI论文七十余篇,承担相关国家自然科学基金项目2项,企业横向项目若干项,参与2项科技部重点研发项目等。

教育经历

入学时间 毕业时间 学位授予单位 学历
2009-09-01 2014-07-01 北京大学 博士研究生毕业
2005-09-01 2009-07-01 浙江大学 大学本科毕业

工作经历

起始年月 截止年月 所在单位名称
2018-05-01 至今 北京化工大学
2015-09-01 2018-04-01 清华大学
2011-12-01 2012-12-01 美国圣母大学

社会职务

社会活动

研究领域

研究方向主要包括:

(1)能源相关的电催化剂设计制备;

(2)电催化过程的原位研究;

(3)电化学器件设计开发。

本科生课程

课程名称 开课学年 课程总学时 选课人数 课程性质
无机化学 2023 48 66 公共基础必修
能源材料与器件 2023 16 12 研讨课-学科交叉
化工专业实验 2022 1 22 实践环节必修
无机化学 2022 48 56 公共基础必修
无机化学 2021 48 56 公共基础必修
基础化学 2020 72 52 专业必修
物理化学实验 B(I) 2019 32 28 实践环节必修

研究生课程

校级项目

纵向项目

  • 1. 温和条件下电化学氨制氢技术研究 ,自选课题,项目时间:2024-04-01 至 2027-03-31
  • 2. 电解乙醇制氢耦合制乙酸的镍基阳极催化剂设计合成及催化机理原位研究 ,国家自然科学基金项目,项目时间:2023-01-01 至 2026-12-31
  • 3. 基于丰产元素催化剂的高稳定性阴离子交换膜电解水研究 ,国家重点研发计划,项目时间:2022-12-01 至 2027-11-30
  • 4. 多元组装复合的分级孔非贵金属析氢反应催化剂的设计和可控合成 ,国家自然科学基金项目,项目时间:2022-01-01 至 2024-12-31
  • 5. 燃料电池三相反应界面原位观测、模拟及高性能膜电极的可控制备与器件集成 ,省、市、自治区科技项目,项目时间:2021-08-31 至 2025-08-31
  • 6. 新一代非铂高温燃料电池研究 ,国家重点研发计划,项目时间:2019-09-01 至 2024-08-31

横向项目

  • 1. 高性能低贵金属阳极催化剂设计与制备 ,无依托项目研究成果,项目时间:2025-05-19 至 2025-12-18
  • 2. 可用于膜电极的非贵金属阳极催化剂研发 ,企事业单位委托科技项目,项目时间:2024-12-19 至 2026-12-18
  • 3. 用于热电联产燃料电池的膜电极性能评价 ,企事业单位委托项目,项目时间:2023-11-15 至 2023-12-15
  • 4. 电解水制氢膜电极有机无机复合界面可控构筑 ,企事业单位委托科技项目,项目时间:2021-01-01 至 2022-12-31
  • 5. 高性能、高稳定性铂合金电催化剂的研发 ,其他研究项目,项目时间:2020-10-01 至 2022-12-31
  • 6. 基于过渡金属化合物催化剂的PEM电解水膜电极的制备工艺研究 ,企事业单位委托科技项目,项目时间:2020-04-17 至 2022-02-17

论文信息

[+][-]代表性论文
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2030年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2029年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2028年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2027年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2026年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2025年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2024年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-] 2023年
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09
[+][-]2023年之前
  • 1. DOI Wei, Hailong;Gu, Fangwei;Wang, Yongsheng;Hao, Jinyuan;Zhu, Wei;Zhuang, Zhongbin
    Synthesis of Pure-Phase Ni2P Nanocatalysts via Phosphorus Ligand Selection for Efficient Hydrogen Evolution Reaction[期刊论文],ChemElectroChem,2023-10-31
  • 2. DOI 眭瑞,Chai Jing,刘雪瑞,裴加景,张雪江,王兴栋,Wang Yu,Dong Juncai,朱威,Chen Wenxing,Zhang Liang,庄仲滨
    Introducing highly polarizable cation in M-N-C type catalysts to boost their oxygen reduction reaction performance[期刊论文],Applied Catalysis B-Environmental,2023-09-04
  • 3. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Wei, Dong;Yin, Yiquan;Wei, Hailong;Zhang, Jinlin;Zhang, Yufeng;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Nitrogen-doped carbon as selectively permeable layer to enhance the anti-poisoning ability of hydrogen oxidation reaction catalysts for hydroxide exchange membrane fuel cells[期刊论文],Applied Catalysis B: Environmental,2023-06-15
  • 4. DOI Wu, Qikang;Yang, Wenjuan;Wang, Xingdong;Zhu, Wei;Lv, Shanshan;Zhou, Yan;Chen, Taiyu;Liu, Shaohuan;Li, Wanying;Chen, Zheng
    Inherent Vacancy of Compressive Ru Nanoparticles Accelerate Electro-Catalytic Hydrogen Energy Conversion[期刊论文],Applied Catalysis B-Environmental,2023-03-13
  • 5. DOI Wang, Yongsheng;Wang, Xinyu;Wei, Hailong;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Unveiling the Metal Incorporation Effect of Steady-Active FeP Hydrogen Evolution Nanocatalysts for Water Electrolyzer[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2023-01-24
  • 6. DOI Wang, Yongsheng;Guo, Xiaoxuan;Wang, Xinyu;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Construction of steady-active self-supported porous Ir-based electrocatalysts for the oxygen evolution reaction[期刊论文],Chemical Communications,2023-01-11
  • 7. DOI Wang, Houpeng;Xu, Zhaoxiang;Lin, Wei;Yang, Xue;Gu, Xianrui;Zhu, Wei;Zhuang, Zhongbin
    Improving the water electrolysis performance by manipulating the generated nano/micro-bubbles using surfactants[期刊论文],Nano Research,2023-01-01
  • 8. DOI Gu, Fangwei;Zheng, Lufan;Wei, Hailong;Mi, Wanliang;Zhang, Cong;Su, Qianqian;Zhu, Wei;Lin, Wei
    Tuning amorphous Ir-IrOx oxygen evolution catalyst via precursor complexation for efficient and durable water electrolysis[期刊论文],Applied Surface Science,2022-12-30
  • 9. DOI 张雪江,王兴栋,管志,方锦杰,眭瑞,裴加景,覃杨远翔,魏东,朱威,庄仲滨
    An Ultrastable Rechargeable Zinc–Air Battery Using a Janus Superwetting Air Electrode [期刊论文],ACS Applied Materials & Interfaces,2022-11-30
  • 10. DOI Zhang, Xuejiang;Wang, Xingdong;Guan, Zhi;Fang, Jinjie;Sui, Rui;Pei, Jiajing;Qin, Yangyuanxiang;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    An Ultrastable Rechargeable Zinc-Air Battery Using a Janus Superwetting Air Electrode[期刊论文],ACS Applied Materials and Interfaces,2022-11-30
  • 11. DOI Wu, Angjian;Zhou, Yimeng;Lv, Jiabao;Zhang, Delong;Peng, Yaqi;Ye, Qiulin;Fu, Pengcheng;Wang, Weitao;Lin, Xiaoqing;Liu, Shaojun;Xu, Mengxia;Qi, Zhifu;Zhu, Songqiang;Zhu, Wei;Yan, Jianhua;Tu, Xin;Li, Xiaodong
    Boosting Electrocatalytic Nitrate-to-Ammonia Conversion via Plasma Enhanced CuCo Alloy-Substrate Interaction[期刊论文],ACS Sustainable Chemistry and Engineering,2022-11-07
  • 12. DOI Pan, Yuan;Li, Min;Mi, Wanliang;Wang, Minmin;Li, Junxi;Zhao, Yilin;Ma, Xuelu;Wang, Bin;Zhu, Wei;Cui, Zhiming;Yin, Hailiang;Liu, Yunqi
    Single-atomic Mn sites coupled with Fe3C nanoparticles encapsulated in carbon matrixes derived from bimetallic Mn/Fe polyphthalocyanine conjugated polymer networks for accelerating electrocatalytic oxygen reduction[期刊论文],Nano Research,2022-09-01
  • 13. DOI Sui, Rui;Zhang, Xuejiang;Wang, Xingdong;Wang, Xinyu;Pei, Jiajing;Zhang, Yufeng;Liu, Xuerui;Chen, Wenxing;Zhu, Wei;Zhuang, Zhongbin
    Silver based single atom catalyst with heteroatom coordination environment as high performance oxygen reduction reaction catalyst[期刊论文],Nano Research,2022-09-01
  • 14. DOI Xue, Yanrong;Liu, Mengyuan;Qin, Yangyuanxiang;Zhang, Yufeng;Zhang, Xuejiang;Fang, Jinjie;Zhang, Xu;Zhu, Wei;Zhuang, Zhongbin
    Ultrathin NiFeS nanosheets as highly active electrocatalysts for oxygen evolution reaction[期刊论文],CHINESE CHEMICAL LETTERS,2022-08-01
  • 15. DOI Pan, Yuan;Ma, Xuelu;Wang, Minmin;Yang, Xuan;Liu, Shoujie;Chen, Hsiao-Chien;Zhuang, Zeweng;Zhang, Yanhui;Cheong, Weng-Chon;Zhang, Chao;Cao, Xing;Shen, Rongan;Xu, Qian;Zhu, Wei;Liu, Yunqi;Wang, Xingdong;Zhang, Xuejiang;Yan, Wensheng;Li, Jun;Chen, Hao Ming;Chen, Chen;Li, Yadong
    Construction of N, P Co-Doped Carbon Frames Anchored with Fe Single Atoms and Fe2P Nanoparticles as a Robust Coupling Catalyst for Electrocatalytic Oxygen Reduction[期刊论文],ADVANCED MATERIALS,2022-07-01
  • 16. DOI 刘宪伟;薛俊海;朱威;庄仲滨
    非铂燃料电池催化剂研究进展[期刊论文],太阳能学报,2022-06-28
  • 17. DOI Pan, Yuan;Wang, Minmin;Li, Min;Sun, Guangxun;Chen, Yinjuan;Liu, Yunqi;Zhu, Wei;Wang, Bin
    In-situ construction of N-doped carbon nanosnakes encapsulated FeCoSe nanoparticles as efficient bifunctional electrocatalyst for overall water splitting[期刊论文],Journal of Energy Chemistry,2022-05-01
  • 18. DOI Zhang, Yufeng;Fang, Jinjie;Zhang, Lipeng;Wei, Dong;Zhu, Wei;Zhuang, Zhongbin
    Amorphous palladium-based alloy nanoparticles as highly active electrocatalysts for ethanol oxidation[期刊论文],CHEMICAL COMMUNICATIONS,2022-04-05
  • 19. DOI Zhang, Yufeng;Zhu, Wei;Fang, Jinjie;Xu, Zhiyuan;Xue, Yanrong;Liu, Di;Sui, Rui;Lv, Qingqing;Liu, Xuerui;Wang, Yongsheng;Chen, Wei;Zhuang, Zhongbin
    Defective Ni3S2 nanowires as highly active electrocatalysts for ethanol oxidative upgrading[期刊论文],Nano Research,2022-04-01
  • 20. DOI Zhang, Yufeng;Zhang, Lipeng;Song, Chun;Qin, Yangyuanxiang;Lu, Lianyue;Zhu, Wei;Zhuang, Zhongbin
    Nickel chalcogenides as selective ethanol oxidation electro-catalysts and their structure-performance relationships[期刊论文],CHEMICAL COMMUNICATIONS,2022-02-17
  • 21. DOI Wang, Yongsheng;Wang, Xinyu;Zhang, Lipeng;Zhang, Yufeng;Xu, Zhaoxiang;Lu, Lianyue;Huang, Junling;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Insights into the Effect of Precursors on the FeP-Catalyzed Hydrogen Evolution Reaction[期刊论文],INORGANIC CHEMISTRY,2022-02-14
  • 22. DOI Pei, Jiajing;Peng, Bo;Lin, He;Chen, Wenxing;Wang, Yu;Dong, Juncai;Mao, Junjie;Jia, Dianzeng;Zhu, Wei;Zhuang, Zhongbin
    Single-atom Ru on Al2O3for highly active and selective 1,2-Dichloroethane catalytic degradation[期刊论文],ACS Applied Materials and Interfaces,2021-11-17
  • 23. DOI Hu, Botao;Huang, Aijian;Zhang, Xuejiang;Chen, Zheng;Tu, Renyong;Zhu, Wei;Zhuang, Zhongbin;Chen, Chen;Peng, Qing;Li, Yadong
    Atomic Co/Ni dual sites with N/P-coordination as bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[期刊论文],NANO RESEARCH,2021-10-01
  • 24. DOI Xue, Yanrong;Wang, Xingdong;Zhang, Xiangqian;Fang, Jinjie;Xu, Zhiyuan;Zhang, Yufeng;Liu, Xuerui;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Cost-Effective Hydrogen Oxidation Reaction Catalysts for Hydroxide Exchange Membrane Fuel Cells[期刊论文],ACTA PHYSICO-CHIMICA SINICA,2021-09-15
  • 25. DOI Xue, Yanrong;Fang, Jinjie;Wang, Xingdong;Xu, Zhiyuan;Zhang, Yufeng;Lv, Qingqing;Liu, Mengyuan;Zhu, Wei;Zhuang, Zhongbin
    Sulfate-Functionalized RuFeOx as Highly Efficient Oxygen Evolution Reaction Electrocatalyst in Acid[期刊论文],ADVANCED FUNCTIONAL MATERIALS,2021-08-01
  • 26. DOI Zhang, Lipeng;Zhang, Juntao;Fang, Jinjie;Wang, Xin-Yu;Yin, Likun;Zhu, Wei;Zhuang, Zhongbin
    Cr-Doped CoP Nanorod Arrays as High-Performance Hydrogen Evolution Reaction Catalysts at High Current Density[期刊论文],SMALL,2021-07-01
  • 27. DOI Pei, Jiajing;Wang, Tao;Sui, Rui;Zhang, Xuejiang;Zhou, Danni;Qin, Fengjuan;Zhao, Xu;Liu, Qinghua;Yan, Wensheng;Dong, Juncai;Zheng, Lirong;Li, Ang;Mao, Junjie;Zhu, Wei;Chen, Wenxing;Zhuang, Zhongbin
    N-Bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction dagger[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2021-05-01
  • 28. DOI Xu, Zhiyuan;Zhang, Xuejiang;Wang, Xingdong;Fang, Jinjie;Zhang, Yufeng;Liu, Xuerui;Zhu, Wei;Yan, Yushan;Zhuang, Zhongbin
    Synthesis of Ag-Ni-Fe-P Multielemental Nanoparticles as Bifunctional Oxygen Reduction/Evolution Reaction Electrocatalysts[期刊论文],ACS NANO,2021-04-27
  • 29. DOI Sui, Rui;Pei, Jiajing;Fang, Jinjie;Zhang, Xuejiang;Zhang, Yufeng;Wei, Feijun;Chen, Wenxing;Hu, Zheng;Hu, Shi;Zhu, Wei;Zhuang, Zhongbin
    Engineering Ag-N-x Single-Atom Sites on Porous Concave N-Doped Carbon for Boosting CO2 Electroreduction[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2021-04-21
  • 30. DOI Liu, Di;Lv, Qingqing;Lu, Siqi;Fang, Jinjie;Zhang, Yufeng;Wang, Xingdong;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    IrCuNi Deeply Concave Nanocubes as Highly Active Oxygen Evolution Reaction Electrocatalyst in Acid Electrolyte[期刊论文],NANO LETTERS,2021-04-14
  • 31. DOI 薛延荣,Lin Shi,刘雪瑞,方锦杰,王兴栋,Brian P. Setzler,朱威,严玉山,庄仲滨
    A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells[期刊论文],Nature Communications,2020-11-06
  • 32. DOI Fang, Jinjie;Zhang, Xuejiang;Wang, Xingdong;Liu, Di;Xue, Yanrong;Xu, Zhiyuan;Zhang, Yufeng;Song, Chun;Zhu, Wei;Zhuang, Zhongbin
    A metal and nitrogen doped carbon composite with both oxygen reduction and evolution active sites for rechargeable zinc-air batteries[期刊论文],JOURNAL OF MATERIALS CHEMISTRY A,2020-08-21
  • 33. DOI Wang, Xingdong;Fang, Jinjie;Liu, Xuerui;Zhang, Xiangqian;Lv, Qingqing;Xu, Zhaoxiang;Zhang, Xuejiang;Zhu, Wei;Zhuang, Zhongbin
    Converting biomass into efficient oxygen reduction reaction catalysts for proton exchange membrane fuel cells[期刊论文],Science China Materials,2020-04-01
  • 34. DOI Guan, Zhi;Zhang, Xuejiang;Fang, Jinjie;Wang, Xingdong;Zhu, Wei;Zhuang, Zhongbin
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2020-01-01
  • 35. DOI Zhang, Juntao,Zhang, Lipeng,Wang, Xingdong,朱威,庄仲滨
    A hierarchical hollow-on-hollow NiCoP electrocatalyst for efficient hydrogen evolution reaction[期刊论文],CHEMICAL COMMUNICATIONS,2019-11-25
  • 36. DOI 朱威,Chen, Chen
    Reaction: Open Up the Era of Atomically Precise Catalysis[期刊论文],Chem,2019-11-14
  • 37. DOI Lin, Rui;Zhu, Wei;Pei, Jiajing;Zhuang, Zhongbin
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],Nano Research,2019-11-01
  • 38. DOI Lin, Rui;Ma, Xuelu;Cheong, Weng-Chon;Zhang, Chao;Zhu, Wei;Pei, Jiajing;Zhang, Kaiyue;Wang, Bin;Liang, Shiyou;Liu, Yuxi;Zhuang, Zhongbin;Yu, Rong;Xiao, Hai;Li, Jun;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    PdAg bimetallic electrocatalyst for highly selective reduction of CO2 with low COOH* formation energy and facile CO desorption[期刊论文],NANO RESEARCH,2019-11-01
  • 39. DOI Guan, Zhi,Zhang, Xuejiang,Fang, Jinjie,Wang, Xindong,朱威,庄仲滨
    Fe,Ni,S,N-doped carbon materials as highly active Bi-functional catalysts for rechargeable Zinc-Air battery[期刊论文],MATERIALS LETTERS,2019-10-16
  • 40. DOI Li, Huiming,Wang, Yang,朱威,庄仲滨
    Hollow bimetallic M-Fe-P (M=Mn, Co, Cu) nanoparticles as efficient electrocatalysts for hydrogen evolution reaction[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-08-30
  • 41. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-05-21
  • 42. DOI Liu, Di;Lu, Siqi;Xue, Yanrong;Guan, Zhi;Fang, Jinjie;Zhu, Wei;Zhuang, Zhongbin
    One-pot synthesis of IrNi@Ir core-shell nanoparticles as highly active hydrogen oxidation reaction electrocatalyst in alkaline electrolyte[期刊论文],NANO ENERGY,2019-05-01
  • 43. DOI You, Gaoping;Zhu, Wei;Zhuang, Zhongbin
    Impacts of anions on the electrochemical oxygen reduction reaction activity and stability of Pt/C in alkaline electrolyte[期刊论文],INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2019-01-01
  • 44. DOI Wu, Konglin;Chen, Zheng;Cheong, Weng-Chon;Liu, Shoujie;Zhu, Wei;Cao, Xing;Sun, Kaian;Lin, Yan;Zheng, Lirong;Yan, Wensheng;Pan, Yuan;Wang, Dingsheng;Peng, Qing;Chen, Chen;Li, Yadong
    Toward Bifunctional Overall Water Splitting Electrocatalyst: General Preparation of Transition Metal Phosphide Nanoparticles Decorated N-Doped Porous Carbon Spheres[期刊论文],ACS APPLIED MATERIALS & INTERFACES,2018-12-26
  • 45. DOI Guan, Zhi;Zhang, Xuejiang;Chen, Wenxing;Pei, Jiajing;Liu, Di;Xue, Yanrong;Zhu, Wei;Zhuang, Zhongbin
    Mesoporous S doped Fe-N-C materials as highly active oxygen reduction reaction catalyst[期刊论文],CHEMICAL COMMUNICATIONS,2018-11-04
  • 46. DOI 朱威,陈郑,潘原,戴若云,吴悦,庄仲滨,王定胜,彭卿,陈晨,李亚栋
    Functionalization of Hollow Nanomaterials for Catalytic Applications: Nanoreactor Construction[期刊论文],ADVANCED MATERIALS,2018-08-20
  • 47. DOI Li, Huiming;Lu, Siqi;Sun, Jingyao;Pei, Jiajing;Liu, Di;Xue, Yanrong;Mao, Junjie;Zhu, Wei;Zhuang, Zhongbin
    Phase-Controlled Synthesis of Nickel Phosphide Nanocrystals and Their Electrocatalytic Performance for the Hydrogen Evolution Reaction[期刊论文],CHEMISTRY-A EUROPEAN JOURNAL,2018-08-09

软件著作

专利

  • 1. 一种应用于电催化氧还原合成过氧化氢的固体电解质及其制备方法 ,CN113809375A
  • 2. 一种用于碱性介质的氢氧化反应催化剂及其合成方法
  • 3. 一种用于质子交换膜燃料电池阳极催化剂及其合成方法
  • 4. 一种用于碱性介质中氧气还原反应的复合催化剂及其制备方法

荣誉及奖励

招生信息

具有良好的化学基础和动手能力。勤奋,好学,团结,活泼。