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个人简介

2017.5-至今 北京化工大学化学与工程学院 2014.9-2017.3 清华大学材料学院 2010.9-2014.7 北京理工大学化工与环境学院 2007.9-2010.7 东南大学化学学院 2003.9-2007.7 内蒙古大学化学学院

研究领域

电化学储能、电容除盐、电催化

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Hu, L.; Gao, R.; Zhang, A.; Yang, R.; Zang, X.; Wang, S.; Yao, S.; Yang, Z.; Hao, H.; Yan, Y.-M., Cu2+ intercalation activates bulk redox reactions of MnO2 for enhancing capacitive performance. Nano Energy 2020, 74. Wang, S.; Zhao, R.; Yao, S.; Li, B.; Liu, R.; Hu, L.; Zhang, A.; Yang, R.; Liu, X.; Fu, Z.; Wang, D.; Yang, Z.; Yan, Y.-M., Stretching the c-axis of the Mn3O4 lattice with broadened ion transfer channels for enhanced Na-ion storage. Journal of Materials Chemistry A 2021, 9 (41), 23506-23514. Zhang, A.; Gao, R.; Hu, L.; Zang, X.; Yang, R.; Wang, S.; Yao, S.; Yang, Z.; Hao, H.; Yan, Y.-M., Rich bulk oxygen Vacancies-Engineered MnO2 with enhanced charge transfer kinetics for supercapacitor. Chemical Engineering Journal 2021, 417. Zhang, A.; Zhao, R.; Hu, L.; Yang, R.; Yao, S.; Wang, S.; Yang, Z.; Yan, Y.-M., Adjusting the Coordination Environment of Mn Enhances Supercapacitor Performance of MnO2. Advanced Energy Materials 2021, 11 (32). Zhao, L.; Zhao, R.; Zhou, Y.; Wang, X.; Chi, X.; Xiong, Y.; Li, C.; Zhao, Y.; Wang, H.; Yang, Z.; Yan, Y.-M., Efficient N-2 reduction with the VS2 electrocatalyst: identifying the active sites and unraveling the reaction pathway. Journal of Materials Chemistry A 2021, 9 (44), 24985-24992. Zhao, Y.; Zhang, K.; Li, Y.; Li, C.; Zhao, R.; Ji, Y.; Meng, Y.; Hu, T.; Wang, H.; Yang, Z.; Yan, Y.-M., Enhanced Electrocatalytic Oxidation of Formate via Introducing Surface Reactive Oxygen Species to a CeO2 Substrate. Acs Applied Materials & Interfaces 2021, 13 (43), 51643-51651. Wang, S.; Yang, R.; Li, B.; Zhao, R.; Yao, S.; Liu, R.; Yang, Z.; Yan, Y.-M., Dual-directional electronic modulation of manganese oxides enabled by heterostructures for efficient sodium ion storage. Journal of Power Sources 2022, 521. Wang, X.; Zhao, L.; Zhao, R.; Zhou, Y.; Wang, S.; Chi, X.; Xiong, Y.; Yao, Y.; Zhang, K.; Li, Y.; Yang, Z.; Yan, Y.-M., Enhanced electrocatalytic nitrogen reduction inspired by a lightning rod effect on urchin-like Co3O4 catalyst. Chemical Engineering Journal 2022, 450. Wei, N.; Zhou, Y.; Yao, Y.; Wang, X.; Rui, Z.; Yang, Z.; Xin, L.; Yan, Y.-M., Surface Reconstruction with a Sandwich-like C/Cu/C Catalyst for Selective and Stable CO2 Electroreduction. Acs Applied Materials & Interfaces 2022, 14 (11), 13261-13270. Yao, S.; Wang, S.; Liu, R.; Liu, X.; Fu, Z.; Wang, D.; Hao, H.; Yang, Z.; Yan, Y.-M., Delocalizing the d-electrons spin states of Mn site in MnO2 for anion-intercalation energy storage. Nano Energy 2022, 99. Yao, S.; Zhao, R.; Wang, S.; Zhou, Y.; Liu, R.; Hu, L.; Zhang, A.; Yang, R.; Liu, X.; Fu, Z.; Wang, D.; Yang, Z.; Yan, Y.-M., Ni-doping induced structure distortion of MnO2 for highly efficient Na+ storage. Chemical Engineering Journal 2022, 429. Zang, X.; Fu, Z.; Wang, D.; Yuan, Z.; Shi, N.; Yang, Z.; Yan, Y.-M., An ion-accumulating effect in a hollow carbon bowl electrode: understanding the structure-enhanced volumetric desalination capacity and ion transport kinetics in capacitive deionization. Journal of Materials Chemistry A 2022, 10 (18), 9988-9996. Zhao, L.; Xiong, Y.; Wang, X.; Zhao, R.; Chi, X.; Zhou, Y.; Wang, H.; Yang, Z.; Yan, Y.-M., Shearing Sulfur Edges of VS2 Electrocatalyst Enhances its Nitrogen Reduction Performance. Small 2022, 18 (11). Zhao, R.; Chi, X.; Wang, X.; Zhao, L.; Zhou, Y.; Xiong, Y.; Yao, S.; Wang, S.; Wang, D.; Fu, Z.; Yang, Z.; Yan, Y.-M., In operando identification of the V4+-site-dependent nitrogen reduction reaction of VSx. Journal of Materials Chemistry A 2022, 10 (18), 10219-10226. Zhou, Y.; Yao, Y.; Zhao, R.; Wang, X.; Fu, Z.; Wang, D.; Wang, H.; Zhao, L.; Ni, W.; Yang, Z.; Yan, Y.-M., Stabilization of Cu+ via Strong Electronic Interaction for Selective and Stable CO2 Electroreduction. Angewandte Chemie-International Edition 2022, 61 (31). Wang, X.; Chi, X.; Fu, Z.; Xiong, Y.; Li, S.; Yao, Y.; Zhang, K.; Li, Y.; Wang, S.; Zhao, R.; Yang, Z.; Yan, Y.-M., Interfacial electric field triggered N2 activation for efficient electrochemical synthesis of ammonia. Applied Catalysis B-Environmental 2023, 322.

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