先进能源材料化学教育部重点实验室(南开大学) Key Laboratory of Advanced Energy Materials Chemistry, Ministry of Education (Nankai University)

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于勐  副教授
Prof. Meng Yu (M. Yu)
BS, Shanghai Jiao Tong University, China (2013)
MS, University of Southern California, USA (2015)
PhD, Nankai University, China (2019)
Postdoc Researcher, Nankai University, China (2019-2023)
Associate Professor, Nankai University, China (2023-)

【研究方向】
能源材料化学,电催化
【个人简介】
于勐,南开大学副教授。1990年8月出生,天津人。主要从事非贵金属电催化剂创制和反应机制研究。提出了基于配位场调控的氧化物材料设计与改性新策略,应用于高活性、长寿命的二次金属空气电池;通过电解液调控提高了过渡金属催化剂的稳定性,揭示了阴离子在优化电极耐腐蚀性能方面的关键作用,实现了工业级电流密度下高稳定电解海水制氢;发展了原位离子刻蚀、三相界面改性等催化剂结构调控与性能提升方法,服务于能源小分子的高效催化转化。相关研究成果发表于Adv. Mater.、ACS. Catal.、Adv. Energy Mater.等期刊,获发明专利授权专利1项,以第二完成人获天津市自然科学二等奖(2022年)。作为项目负责人或骨干成员承担重点研发计划“催化科学”专项、国家自然科学基金青年项目、博士后基金面上项目等科研任务。
代表性论文:
1. Jinhan Li, Keqiang Xu, Fangming Liu, Youzeng Li, Yanfang Hu, Xijie Chen, Huan Wang*, Wence Xu, Youxuan Ni, Guoyu Ding, Tete Zhao, Meng Yu*, Wei Xie, Fangyi Cheng*. Hollow Hierarchical Cu2O-Derived Electrocatalysts Steering CO2 Reduction to Multi-Carbon Chemicals at Low Overpotentials. Advanced Materials 2023, 35, 2301127.
2. Tete Zhao, Jinhan Li, Jiuding Liu, Fangming Liu, Keqiang Xu, Meng Yu*, Wence Xu, Fangyi Cheng*. Tailoring the Catalytic Microenvironment of Cu2O with SiO2 to Enhance C2+ Product Selectivity in CO2 Electroreduction. ACS Catalysis 2023, 13, 4444.
3. Tete Zhao, Xupeng Zong, Jiuding Liu, Jialei Chen, Keqiang Xu, Xiao Wang, Xijie Chen, Wutong Yang, Fangming Liu, Meng Yu*, Fangyi Cheng*. Functionalizing Cu nanoparticles with fluoric polymer to enhance C2+ roduct selectivity in membraned CO2 reduction. Applied Catalysis B: Environmental 2024, 340, 123281.
4. Meng Yu#, Fangming Liu#, Jinhan Li, Jiuding Liu, Yudong Zhang, Fangyi Cheng*. Multidimensional nonstoichiometric electrode materials for electrochemical energy conversion and storage. Advanced Energy Materials 2021, 2100640.
5. Meng Yu, Jinhan Li, Fangming Liu, Jiuding Liu, Wence Xu, Honglu Hu, Xijie Chen, Weichao Wang, Fangyi Cheng*. Anionic formulation of electrolyte additive towards stable lectrocatalytic oxygen evolution in seawater splitting. Journal of Energy Chemistry 2022, 72, 361.



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