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个人简介

教育经历 2000年9月~2004年7月,清华大学,材料科学与工程系,工学学士 2004年9月~2009年6月,清华大学,材料科学与工程系,工学博士 工作经历 2009年7月~2011年7月,清华大学材料科学与工程系,北京电子显微镜中心,博士后 2011年8月~2014年5月,德国柏林工业大学(Technische Universit?t Berlin),化学系,博士后 2014年6月~至今,清华大学深圳研究生院,能源与环境学部,副教授 荣誉奖项 国际显微学会联合会第18届国际显微大会青年科学家奖 (IFSM Young Scientist Award 2014) 深圳市国家级领军人才(2015)、深圳市孔雀计划B类(2014)

研究领域

主要从事原子尺度的电化学功能材料设计与表征,重点发展和利用具有超高空间分辨率的像差矫正透射电子显微学方法,结合原位电化学谱学表征,获得材料的精确原子结构和电子结构及其在固液电化学环境下的动态行为,揭示其相关电化学性能,从而设计高性能的电催化剂、电解质等电化学功能材料,研究其在燃料电池、电解水制氢和CO2电还原等器件中的应用。

近期论文

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Jie Wei, Dongsheng Xia, Yinping Wei, Xuya Zhu, Jia Li, Lin Gan*. Probing the oxygen reduction reaction intermediates and dynamic active site structures of molecular and pyrolyzed Fe–N–C electrocatalysts by in situ Raman spectroscopy. ACS Catalysis, 2022, doi:10.1021/acscatal.2c00771. Dongsheng Xia, Chenchen Yu, Yinghao Zhao, Yinping Wei, Haiyan Wu, Yongqiang Kang, Jia Li,* Lin Gan* and Feiyu Kang*. Degradation and regeneration of Fe-Nx active sites for oxygen reduction reaction: the role of surface oxidation, Fe demetallation and local carbon microporosity, Chemical Science, 2021, 12: 11576. Bingqin Lin, # Xi Wu, # Lin Xie,* Yongqiang Kang, Hongda Du, Feiyu Kang, Jia Li,* Lin Gan.* Atomic imaging of subsurface hydrogen and insight into the surface reactivity of palladium hydrides. Angewandte Chemie International Edition, 2020, 59, 20348-20352. Xiaozhang Yao, Yingpin Wei, Zhongxiang Wang, Lin Gan.* Revealing the role of surface composition on the particle mobility and coalescence of carbon-supported Pt alloy fuel cell catalysts by in situ heating (S)TEM. ACS Catalysis, 2020, 10, 7381-7388. Xin Yang,# Dongsheng Xia,# Hongda Du, Feiyu Kang, Lin Gan,* Jia Li.* Unraveling the fifth ligand on the Fe-N4-C electrocatalyst and its impact on the pH-dependent ORR activities and poisoning kinetics. Advanced Science, 2020, 7 (12), 2000176 Dongsheng Xia,# Xin Yang, # Jia Li*, Lin Gan*, Feiyu Kang*. Direct growth of carbon nanotubes doped with single atomic Fe-N4 sites and neighboring graphitic nitrogen for efficient and stable oxygen reduction electrocatalysis. Advanced Functional Materials, 2019, 29 (49), 1906174. Zhongxiang Wang, Xiaozhang Yao, Yongqiang Kang, Linqing Miao, Dongsheng Xia, Lin Gan*. Structurally ordered low-Pt intermetallic electrocatalysts toward durably high oxygen reduction reaction activity. Advanced Functional Materials, 2019, 29 (35), 1902987. Lin Gan, Marc Heggen, Chunhua Cui, Peter Strasser*. Thermal facet healing of concave Pt-Ni octahedral nanoparticles imaged in situ at atomic scale: implications for rational synthesis of durable high performance ORR electrocatalysts. ACS Catalysis, 2016,6:692-695. Lin Gan, Chunhua Cui, Marc Heggen, Fabio Diogini, Stefan Rudi, Peter Strasser*. Element-specific anisotropic growth of shaped platinum alloy nanocrystals. Science, 2014, 346: 1502-1506. Lin Gan, Marc Heggen, Rachel O’Malley, Brian Theobald, Peter Strasser*. Understanding and controlling nanoporosity formation for improving the stability of bimetallic fuel cell catalysts. Nano Letters, 2013, 13, 1131-1138. Chunhua Cui, Lin Gan, Marc Heggen, Stefan Rudi, Peter Strasser*. Compositional segregation in shaped Pt alloy nanoparticles and their structural behavior during electrocatalysis. Nature Materials, 2013, 12, 765-771. Lin Gan, Stefan Rudi, Marc Heggen, Chunhua Cui, Peter Strasser*. Core-shell compositional fine structures of dealloyed PtxNi1-X nanoparticles and their impact on oxygen reduction catalysis. Nano Letters 2012, 12, 5423-5430.

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