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中国科学院上海高等研究院导师教师师资介绍简介-杨辉

本站小编 Free考研考试/2021-02-14

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tutorAreaId:8
name:杨辉
phone:
sex:1
post:中心主任
title:研究员
address:海科路99号2号楼408
zipCode:201210
email:yangh@sari.ac.cn
headImgUrl:/upload/**/20**4290.bmp
resume:杨辉,博士,研究员(二级),博士生导师,上海高研院储能中心主任,享受国务院特殊津贴。历任国家科技部973计划类项目首席科学家、863计划“十二五”先进能源领域主题专家、中科院动力能源专家组成员等。现为科技部重点研发计划纳米科技项目负责人、中国可再生能源学会理事、氢能燃料电池专业委员会副主任等。
长期从事氢能燃料电池相关研究,在燃料电池纳米电催化剂及其耐久性、膜电极集合体研发、直接醇燃料电池等关键技术的解决和系统集成以及新型储能电池等方面开展了大量工作。已发表论文200余篇,获他引约9000余次。已申请发明专利50余件,其中42件已授权,作为主编在科学出版社出版《应用电化学》编著1部,已连续23次印刷。
指导的研究生曾获中国科学院院长优秀奖、中科院-沙特基础工业公司奖学金、中国科学院美国超导奖、荷兰壳牌能源创新与研究奖以及上海市优秀毕业生称号等。

yjly:氢能(燃料电池、电解水)关键材料与器件;纳米电催化;新型储能材料

jljry:科技部"973"计划首席科学家、中科院BR计划、中科院核心特聘研究员等

cdky:1. 化学能高效转化碳基纳米电催化剂结构设计、可控制备及应用研究,科技部重点研发计划(在研)
2. 利用可再生能源电解制氢的低/非贵金属催化剂研制及示范,中科院战略先导项目(在研)
3. 燃料电池超低铂阴极的结构设计及动力学和传质机理研究,国家自然科学基金重点项目(在研)



dblz:1. Carbon-defect-driven electroless deposition of pt atomic clusters for highly efficient hydrogen evolution, Journal of the American Chemical Society 142 (12), 5594-5601.
2. Covalent triazine framework confined copper catalysts for selective electrochemical CO2 reduction: operando diagnosis of active sites, ACS Catalysis, 2020, 10, 4534-4542.
3. Cobalt/zinc dual-sites coordinated with nitrogen in nanofibers enabling efficient and durable oxygen reduction reaction in acidic fuel cells, Journal of Materials Chemistry A, 2020, 8 (7), 3686-3691
4. N-doping induced tensile-strained Pt nanoparticles ensuring an excellent durability of the oxygen reduction reaction, Journal of Catalysis, 382 (2020) 247–255.
5. Covalent triazine-based polymers with controllable band alignment matched with bivo4 to boost photogeneration of holes for water splitting, Chemistry of Materials, 2019, 31, 8062-8068.
6. BiVO4 nanocrystals with controllable oxygen vacancies induced by Zn-doping coupled with graphene quantum dots for enhanced photoelectrochemical water splitting, Chemical Engineering Journal, 372 (2019) 399-407.
7. Co nanoparticle embedded in atomically-dispersed Co-N-C nanofibers for oxygen reduction with high activity and remarkable durability, Nano Energy, 52 (2018) 485-493.
8. Multidimensional nanostructured membrane electrode assemblies for proton exchange membrane fuel cell applications Journal of Materials Chemistry A, 2019, 7, 9447. (Invited review)
9. Boosting electrocatalytic activities of plasmonic metallic nanostructures by tuning the kinetic pre-exponential factor, Journal of Catalysis, 354 (2017) 160-168.
10. Single cobalt atom and N codoped carbon nanofibers as highly durable electrocatalyst for oxygen reduction reaction, ACS Catalysis, 2017, 7, 6864-6871.

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