葛君杰

发布者:冯硕发布时间:2023-07-25动态浏览次数:12





姓名:葛君杰 教授


单位:中国科学技术大学 化学与材料科学学院


邮箱:gejunjie@ustc.edu.cn


主要研究方向与成果:

研究兴趣聚焦氢能源与燃料电池相关研究,内容包括基础电化学、催化剂结构创制与构效关系、机理与动力学、关键材料、核心部件与系统。近年来在大幅度降低贵金属用量的前提下,提升了燃料电池与电解水性能,其中燃料电池在低贵金属载量下,氢空性能达1.5W/cm2;电解水低贵金属条件下性能达3A/cm2@1.84V,均处于国际一流水平。成果发表在PNASJ. Am. Chem. Soc., Joule, Nature Commun.Angew. Chem. Int. Ed.Energy. Environ. Sci.等。获省部级奖励两次,20多次受邀参加国内外学术会议做邀请报告或担任分会主席等,担任《应用化学》、《Frontiers in Chemistry》编委,《Nano Research》、《Chinese Chemical Letters》、《Chemcial Synthesis》青年编委,任“International Academy of Electrochemical Energy Science”理事、IEEE电力与能源协会中国区储能技术委员会常务理事等。


代表性论文:

1、  Zhaoping Shi, Ji Li, Yibo Wang, Shiwei Liu, Jianbing Zhu, Jiahao Yang, Xian Wang, Jing Ni, Zheng JiangLijuan Zhang, Ying Wang*, Changpeng Liu, Wei Xing*, Junjie Ge*Customizing the reaction route of ruthenium oxide towards stabilized water oxidation in high performance PEM electrolyzersNAT COMMUN. 2023DOI : 10.1038/s41467-023-36380-9

2Xian Wang, Yang Li , Ying Wang , Hao Zhang , Zhao Jin, Xiaolong Yang , Zhaoping Shi, Liang Liang , Zhijian Wu , Zheng Jiang, Wei Zhang , Changpeng Liu, Wei Xing. Junjie Ge*Proton Exchange Membrane Fuel Cells Powered with both CO and H2Proceedings of the National Academy of Sciences (PNAS),2021,118 (43)e2107332118.

3Zhaoping Shi.Ying Wang. Li Ji. Xian Wang.Yibo Wang.Yang Li. Weilin Xu. Jiang, Zheng. Changpeng Liu.Wei Xing. Junjie Ge*Confined Ir single sites with triggered lattice oxygen redox: Toward boosted and sustained water oxidation catalysis JOULE. 2021, 5(8): 2164-2176.

4Meiling Xiao. Liqin Gao. Ying Wang. Xian Wang. Jianbing Zhu. Zhao Jin. Changpeng Liu. Chen, Hengquan. Li, Gaoran. Junjie Ge*. He, Qinggang*. Zhijian Wu. Chen, Zhongwei*. Wei Xing*, Engineering Energy Level of Metal Center: Ru Single-Atom Site for Efficient and Durable Oxygen Reduction CatalysisJ AM CHEM SOC. 2019, 141: 19800-19806.

5Zhaoyan Luo. Zhang, Hao. Yang, Yuqi. Xian Wang. Yang Li. Zhao Jin. Jiang, Zheng*. Changpeng Liu. Wei Xing. Junjie Ge*Reactant friendly hydrogen evolution interface based on di-anionic MoS2 surface NAT COMMUN. 2020, 11(1): 1116.