刘友星头像

刘友星

副教授

研究方向:层状多孔分子精准制备及其在光电催化、生物、环境等领域应用

学历:博士研究生毕业

  • 部门: 材料科学与工程学院
  • ORCID:
  • DBLP:

10 访问

  • 电子邮箱: 2024500122(at)buct.edu.cn
  • 办公地址: 材料学院405

个人简介

科研概述:

北京化工大学高层次人才引进(C),目前在Nat. Synth., Nat. Commun., JACS, Angew. Chem. Int. Ed., Adv. Mater., Adv. Funct. Mater., ACS Nano等期刊发表论文50余篇,其中第一/共一作者28篇。申请/授权发明专利15项。获得国家博士后创新人才支持计划,主持国家自然科学基金面上项目和青年基金博士后面上基金、北京化工大学高层次人才启动基金等项目。曾获得国家奖学金(3次)、中国科学院院长优秀奖、中科院化学所所长奖、北京市优秀毕业生、唐敖庆化学奖等省部级奖项十余项

目前主要从事原子结构精确的层状多孔分子精准设计(COFsMOFs及复合分子)并探究其在能源转化(电催化、储能)、太阳能资源综合利用(光催化、高附加值产品、环境)、医学生物、电子器件(场效应晶体管、传感器)等领域的应用

部分代表论文:


[1] Youxing Liu, Lu Li, Zhiyuan Sang, Hao Tan, Na Ye, Chenglong Sun, Zongqiang Sun, Mingchuan Luo, Shaojun Guo* Asymmetric electron in covalent organic frameworks enhances direct photosynthesis of hydrogen peroxide. Nature Synthesis 2025,4, 134-141.

[2] Youxing Liu, Lu Li, Hao Tan, Na Ye, Yu Gu, Shuoqing Zhao, Shipeng Zhang, Mingchun Luo, and Shaojun Guo*. Fluorination of covalent organic framework reinforcing the confinement of Pd nanoclusters enhances hydrogen peroxide photosynthesis. Journal of the American Chemical Society 2023,36, 19877–19884.

[3] Youxing Liu, Yanan Wei, Minghui Liu, Yichao Bai, Xinyu Wang, Shengcong Shang, Changsheng Du, Jianyi Chen,* and Yunqi Liu*. Two-dimensional metal-organic framework film for realizing optoelectronic synaptic plasticity. Angewandte Chemie International Edition 2021, 60, 17440−17445.

[4] Youxing Liu, Yanan Wei, Minghui Liu, Yichao Bai, Xinyu Wang, Shengcong Shang, Changsheng Du, Jianyi Chen,* and Yunqi Liu*. Face-to-face growth of wafer-scale 2D semiconducting MOF films on dielectricsubstrates. Advanced Materials 2021, 33, 2007741.

[5] Youxing Liu, Yanan Wei, Minghui Liu, Yichao Bai, Xinyu Wang, Shengcong Shang, Jianyi Chen,* and Yunqi Liu*. Electrochemical synthesis of large area two-dimensional metal−organic framework films on copper anodes. Angewandte Chemie International Edition 2021, 60, 2887−2891.

[6] Minghui Liu, Yachao Xu, Youxing Liu*, Shengcong Shang, Wenqiang Gao, Xinyu Wang, Jiaxin Hong, Helin Xu, Chunyu Hua, Zewen You, Zhixia Zhou, Shaojun Guo*, Yunqi Liu, Jianyi Chen* Constructing large-area oriented covalent organic framework based PN heterostructure films to enhance artificial photosynthesis of H2O2. Angewandte Chemie International Edition 2025, e202505491.

[7] Youxing Liu, Yaru Guo, Nadaraj Sathishkumar, Minghui Liu, Lu Li, Zhiyuan Sang, Rongjuan Feng, Zongqiang Sun, Chenglong Sun,Mingchuan Luo, Xuliang Deng, Gang Lu*, Shaojun Guo*. Halogen atom-induced local asymmetric electron in covalent organic frameworks boosts photosynthesis of hydrogen peroxide from water and air, Matter 2025, 8, 102076.  

[8] Yuanding Fang#, Youxing Liu# (共一), Haojie Huang, Jianzhe Sun, Jiaxing Hong, Fan Zhang, Xiaofang Wei, Wenqiang Gao, Mingchao Shao, Yunlong Guo*, Qingxin Tang,* and Yunqi Liu*, Design and synthesis of broadband absorption covalent organic framework for efficient artificial photocatalytic amine coupling, Nature Communications 2024,15,4856.

[9] Zhengyi Qian#, Youxing Liu# (共一), Zheng Lin, Na Ye, Yingjun Tan, Fei Liu, Yu Gu, Qizheng Huang, Hongyu Guo, Mingchuan Luo*, Shaojun Guo*, Hydrophobic cation immobilized covalent organic frameworks enables selective and stable electrosynthesis of ethylene from CO2, Journal of the American Chemical Society 2025, 147, 21877−21884.

[10] Youxing Liu, Hao Tan, Yanan Wei, Minghui Liu, Jiaxin Hong, Wenqiang Gao, Shuoqing Zhao, Shipeng Zhang, and Shaojun Guo*. Cu2O/2D COFs core/shell nanocubes with anti-photocorrosion ability for efficient photocatalytic hydrogen evolution. ACS Nano 2023, 17, 59946001. 

[11] Youxing Liu, Hao Tan, Jianzhe Sun, Yanan Wei, Minghui Liu, Jiaxin Hong, Shengcong Shang, Xinyu Wang, Lu Li, Yu Gu, Na Ye, Jianyi Chen, Yong Yang, Shaojun Guo*, and Yunqi Liu. A universal room-temperature approach to large-area continuous COFs film for photocatalytic coupling of amines. Advanced Functional Materials 2023, 2302874.

[12] Ying Wang, Zhong Zhou, Yachao Xu*, Ruolan Zhao, Rongjuan Feng, Peng Yu*, Youxing Liu*. Engineering quantum dots protective layer boosts long-term stability of photocatalytic CO2 -to-CH4 Reduction. Advanced Functional Materials 2025, 2504435.

[13] Ying Wang, Ruolan Zhao, Yachao Xu*, Bojing Sun*, Zhong Zhou, Peng Yu, Yue Qu, Youxing Liu*. S-Pt coordination bond enhanced local surface plasmon resonance boosts photocatalytic H2 production coupled with high value-added products from plastic waste. Nano Energy 2025, 141, 111103.

[14] Qinqin Li, Shihan Zhang, Yachao Xu, Yaru Guo*, Youxing Liu*, Constructing polymetallic nodes in metal-organic frameworks enhance antibacterial of drug-resistant bacteria. Advanced Science 2025, 2501327. 

[15] Ying Wang, Ruolan Zhao, Yachao Xu, Peng Yu, Shifang Yang, Yue Qu, Rongjuan Feng, Mingyi Zhang, Youxing Liu*. Designing self-adaptative cyclized polyacrylonitrile-polyethyleneimine conjugates enhance uranium extraction from natural seawater. Nature Communications 2025,16, 9249.

申请/授权发明专利:

202310005979.0, 202310845949.0, 202010013779.6, 202010013773.9, 202010829824.5, 202010013775.8, 202010056976.6, 201810093413.7, 201810093432.X, 202110135910.0, 202110147552.5, 202010315707.7, 2023114191709., 202210276145.9

招生条件: 

自律、勤奋刻苦、善于思考、有良好的英语听说书写能力、身体心理健康

相关专业:无机/有机材料、无机/有机化学、半导体材料、光催化、电催化、环境、传感等相关专业/领域

联系方式:liuyxspost@pku.edu.cn 或 liuyx@buct.edu.cn


教育经历

入学时间 毕业时间 学位授予单位 学历
2019-09-01 2022-07-01 中国科学院化学研究所 博士研究生毕业
2016-09-01 2019-07-01 北京化工大学 硕士研究生毕业
2012-09-01 2016-07-01 邯郸学院 大学本科毕业

工作经历

起始年月 截止年月 所在单位名称
2022-07-05 2024-08-28 北京大学

社会职务

社会活动

研究领域

层状共轭多孔分子设计(COFsMOFs及复合分子)、能源转化(电催化、储能)、太阳能资源综合利用(光催化、高附加值产品、环境)、医学生物、电子器件(场效应晶体管、传感器)等领域

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
材料专业基础实验 2025 48 实践环节必修
材料专业基础实验 2025 48 实践环节必修
材料专业基础实验 2025 48 实践环节必修
材料专业基础实验 2025 48 实践环节必修
材料专业基础实验 2025 48 实践环节必修
材料专业基础实验 2025 48 实践环节必修
精细陶瓷材料 2025 32 专业必修
材料专业基础实验 2024 48 27 实践环节必修
材料专业基础实验 2024 48 26 实践环节必修
材料专业基础实验 2024 48 27 实践环节必修
材料专业基础实验 2024 48 27 实践环节必修
材料专业基础实验 2024 48 26 实践环节必修
材料专业基础实验 2024 48 27 实践环节必修

研究生课程

校级项目

纵向项目

  • 1. 低维共价有机框架限域孤立金属簇及光催化制氢研究 ,国家自然科学基金项目,项目时间:2024-01-01 至 2026-12-31

横向项目

论文信息

[+][-]代表性论文
[+][-] 2030年
[+][-] 2029年
[+][-] 2028年
[+][-] 2027年
[+][-] 2026年
[+][-] 2025年
[+][-] 2024年
[+][-] 2023年
[+][-]2023年之前

软件著作

专利

荣誉及奖励

招生信息