葛爱民 |
发布人:张妮 发布时间:2022-08-30 |
葛爱民 博士 博士生导师,特聘研究员 东华大学先进低维材料中心 地址:上海市松江区人民北路2999号复合材料大楼A426 邮编:201620 Email:amge@dhu.edu.cn
教育和工作经历: 2004.09-2008.07 中国科学技术大学化学物理系本科 2009.04-2011.03 日本北海道大学环境物质科学系硕士 2011.04-2014.03 日本北海道大学环境物质科学系博士 2014.05-2019.05 美国埃默里大学化学系博士后 2019.07-2021.12 日本东北大学化学系助理教授 2022.09-至今 东华大学先进低维材料中心特聘研究员、博士生导师 研究方向: 1、 界面振动光谱表征技术(红外、拉曼、和频) 2、 能源材料界面电化学(储能材料、催化材料) 3、 软物质界面结构与动力学 荣誉及获奖情况: 上海市领军人才(海外)项目(2022)
近年来承担的主要科研项目: 1、 国家自然科学基金面上项目,2025至2028,在研,主持。 2、 人社部博士后海外引才专项,2024至2026,在研,主持。 3、 上海市自然科学基金面上项目,2023至2026,在研,主持。 4、 东华大学基本科研业务费学科交叉重点计划项目,2025至2027,在研,参与。 5、 国家自然科学基金科学传播类专项项目,2024至2025,在研,参与。
近年来发表的代表性论著、专利: 论文 1、 Lang, W.; Zhang, W.; Zhang, N.; Huang, H.; Lin, F.; Ge, A.; Xue, B.*; Yang, S.*, Effects of pH and Salt Concentration on Assembly and Disassembly of the PEOX-EI-50/PAA Complex Containing Hydrogen Bonding and Electrostatic Force Dual Interaction. Macromolecules, 2025, 58, 3974-3982. 2、 Li, X.; Zhang, T.; Zhao, Y.; Zhu, X.; Ge, A.; Gordon, K. C.; Wang F.; Xu, G.*; Zhu, M.*, Enhancing Robustness and Charge Transfer Kinetics of Sodium-ion Batteries through Introduction of Anionic Anchoring Separators. J. Am. Chem. Soc. 2025, 147, 8488-8499. 3、 Zhao Y.; Yu Z.; Ge, A.*; Liu L.; Faria J. L.; Xu, G.*; Zhu M., Direct seawater splitting for hydrogen production: recent advances in materials synthesis and technological innovation. Green Energy & Environment, 2025, 10, 11-33. 4、 Kannari K.; Ge, A.; Xu, C.; Inoue K.; Ye, S.*, From Bulk to Surface: A Raman Spectroscopic Analysis of Solvation Structures in Concentrated Acetonitrile Electrolytes for Li-O2 Batteries. J. Phys. Chem. C 2024, 128, 20148-20155. 5、 Ge, A.†; Nagai, R.†; Nemoto, K.; Li, B.; Kannari, K.; Inoue, K.; Ye, S.*, Unraveling the Solvent Stability on the Cathode Surface of Li–O2 Battery by Using in Situ Vibrational Spectroscopies. Faraday Discuss. 2024, 248, 119-133. 6、 Xu, C.; Ge, A.; Kannari, K.; Peng, B.; Xue, M.; Ding, B.; Inoue, K.; Zhang, X.*; Ye, S.*, The Decisive Role of Li2O2 Desorption for Oxygen Reduction Reaction in Li–O2 Batteries.ACS Energy Lett. 2023, 8, 1289-1299. 7、 Zhou, D.†;Ge, A.†; Kogina, T.; Inoue, K.; Chen, Y.*; Ye, S.*, Molecular Structures at Nafion/Graphene Interfaces Investigated by Sum-Frequency Generation Spectroscopy. J. Phys. Chem. C 2022, 126, 6523-6530. 8、 Ge, A.; Nagai, R.; Xu, C.; Kannari, K.; Peng, B.; Inoue, K.; Morita, A.; Ye, S.*, Unraveling the Unstable Nature of Tetraglyme-Based Electrolytes Toward Superoxide and the Inhibitory Effect of LithiumIons by Using in Situ Vibrational Spectroscopies. J. Phys. Chem. C 2022, 126, 2980-2989. 9、 Ge, A.; Inoue, K.; Ye, S.*, Probing the Electrode-Solution Interfaces in Rechargeable Batteries by Sum-Frequency Generation Spectroscopy. J. Chem. Phys.2020, 153, 170902. 10、Ge, A.*; Zhou, D.; Inoue, K.; Chen, Y.; Ye, S.*, Role of Oxygen in Surface Structures of the Solid-Electrolyte Interphase Investigated by Sum Frequency Generation Vibrational Spectroscopy.J. Phys. Chem. C 2020, 124, 17538-17547. 11、Ge, A.†; Kastlunger, G.†; Meng, J.; Lindgren, P.; Song, J.; Liu, Q.; Zaslavsky, A.; Lian, T.*; Peterson, A.*, On the Coupling of Electron Transfer to Proton Transfer at Electrified Interfaces. J. Am. Chem. Soc. 2020, 142, 11829-11834. 12、Ge, A.†; Rudshteyn, B.†; Videla, P. E.†; Miller, C. J.; Kubiak, C. P.*; Batista, V. S.*; Lian, T.*, Heterogenized Molecular Catalysts: Vibrational Sum-Frequency Spectroscopic, Electrochemical, and Theoretical Investigations. Acc. Chem. Res. 2019, 52, 1289-1300. 13、Clark, M. L.†; Ge, A.†; Videla, P. E.†; Rudshteyn, B.; Miller, C. J.; Song, J.; Batista, V. S.*; Lian, T.*; Kubiak, C. P.*, CO2 Reduction Catalysts on Gold Electrode Surfaces Influenced by Large Electric Fields. J. Am. Chem. Soc. 2018, 140, 17643-17655. 14、Ge, A.†; Videla, P. E.†; Rudshteyn, B.; Liu, Q.; Batista, V. S.*; Lian, T.*, Dopant-Dependent SFG Response of Rhenium CO2 Reduction Catalysts Chemisorbed on SrTiO3 (100) Single Crystals. J. Phys. Chem. C 2018, 122, 13944-13952. 15、Ge, A.†; Rudshteyn, B.†; Zhu, J.; Maurer, R. J.*; Batista, V. S.*; Lian, T.*, Electron-Hole-Pair-Induced Vibrational Energy Relaxation of Rhenium Catalysts on Gold Surfaces. J. Phys. Chem. Lett. 2018, 9, 406-412. 16、Ge, A.†; Videla, P. E.†; Lee, G. L.; Rudshteyn, B.; Song, J.; Kubiak, C. P.*; Batista, V. S.*; Lian, T.*, Interfacial Structure and Electric Field Probed by in Situ Electrochemical Vibrational Stark Effect Spectroscopy and Computational Modeling. J. Phys. Chem. C 2017, 121, 18674-18682. 17、Ge, A.†; Rudshteyn, B.†; Psciuk, B. T.; Xiao, D.; Song, J.; Anfuso, C. L.; Ricks, A. M.; Batista, V. S.*; Lian, T.*, Surface-Induced Anisotropic Binding of a Rhenium CO2-Reduction Catalyst on Rutile TiO2 (110) Surfaces. J. Phys. Chem. C 2016,120,20970-20977. 18、Ge, A.; Matsusaki, M.; Qiao, L.; Akashi, M.; Ye, S.*, Salt Effects on Surface Structures of Polyelectrolyte Multilayers (PEMs) Investigated by Vibrational Sum Frequency Generation (SFG) Spectroscopy. Langmuir 2016, 32, 3803-3810. 19、Ge, A.; Seo, J.-H.; Qiao, L.; Yui, N.; Ye, S.*, Structural Reorganization and Fibrinogen Adsorption Behaviors on the Polyrotaxane Surfaces Investigated by Sum Frequency Generation (SFG) Spectroscopy. ACS Appl. Mater. Interfaces 2015, 7, 22709-22718. 20、Ge, A.; Peng, Q.; Qiao, L.; Yepuri, N. R.; Darwish, T. A.; Matsusaki, M.; Akashi, M.; Ye, S.*, Molecular Orientation of Organic Thin Films on Dielectric Solid Substrates: A Phase-Sensitive Vibrational SFG Study. Phys. Chem. Chem. Phys. 2015, 17, 18072-18078. 课题组招生 本课题组依托材料科学与工程学院招收硕士生、博士生,欢迎具有化学、材料、物理等学科背景的同学加入我们,有意者请将简历发送至amge@dhu.edu.cn。
电化学红外、拉曼光谱测试开放 本课题组具有完善的原位电化学红外光谱、拉曼光谱设备条件,可满足常规的电催化(例如利用表面增强红外光谱观测电催化过程中的界面水结构变化)、电池(例如利用拉曼光谱监测电极材料充放电过程中的结构演变)等体系的原位/工况监测。现具有一定的对外开放机时,欢迎校内外课题组与我们进行合作,详情请联系amge@dhu.edu.cn。 |