研究方向 纳米尺度(团簇、单原子级)材料的设计合成及其电催化性能和机制研究
学习工作经历 (1)2024.05至今,江西师范大学,化学与材料学院,讲师 (2)2020.03至2024.03,哈尔滨工业大学(深圳),博士 (3)2015.09至2018.06,南昌航空大学,硕士 (4)2015.09至2018.06,中国科学院福建物质结构研究所,联合培养研究生 (5)2011.09至2015.06,广东石油化工学院,学士
代表性论文 (1) Yu, Li‐Hong#; Ye, Zi‐Ming#; Zhang, Xue‐Feng; Du, Hong‐Gang; Wang, Li‐Dong;Zhang, Meng‐Tian*; Yang, Jian; Zhang, Jia; Cao, Li‐Ming; He, Chun‐Ting*. Decoupling the Electronic and Steric Effects on All‐Organic Electrocatalysts for Direct Oxygen Evolution Reaction. Adv. Funct. Mater. 2025, 36, e18505. (2) Zhang, Xiao-Han; Zhang, Mengtian#; Du, Hong-Gang; Huang, Hai-Hua; Zhang, Xue-Feng; Wen, Xia; Wang, Li-Dong; Deng, Wei-Zhen; He, Yu-Mei; Bai, Jie; Ding, Li-Wen; He, Chun-Ting*. Deciphering the Role of Lattice Selenium in Electrocatalytic Self-Reconstruction for Boosting Alkaline Hydrogen Evolution. Angew. Chem. Int. Ed.2025,64 (33), e202507040. (3) Zhang, Mengtian#; Li, Hao#; Chen, Junxiang; Ma, Fei‐Xiang; Zhen, Liang; Wen, Zhenhai*; Xu, Cheng‐Yan*. A Low‐Cost, Durable Bifunctional Electrocatalyst Containing Atomic Co and Pt Species for Flow Alkali‐Al/Acid Hybrid Fuel Cell and Zn–Air Battery. Adv. Funct. Mater. 2023, 33, 2303189. (4)Zhang, Mengtian#; Li, Hao#; Chen, Junxiang; Ma, Fei‐Xiang; Zhen, Liang; Wen, Zhenhai*; Xu, Cheng‐Yan*. High‐Loading Co Single Atoms and Clusters Active Sites toward Enhanced Electrocatalysis of Oxygen Reduction Reaction for High‐Performance Zn–Air Battery. Adv. Funct. Mater. 2022, 33 (4), 2209726. (5) Zhang, Mengtian#; Li, Hao#; Cai, Pingwei; Chen, Kai; Wen, Zhenhai*. High‐Performance Flow Alkali‐Al/Acid Hybrid Fuel Cell for High‐Rate H2 Generation. Adv. Funct. Mater. 2021, 31 (35), 2103248. (6) Zhang, Mengtian#; Chen, Junxiang#; Li, Hao; Cai, Pingwei; Li, Yan; Wen, Zhenhai*. Ru-RuO2/CNT Hybrids as High-Activity pH-universal Electrocatalysts for Water Splitting within 0.73 V in an Asymmetric-Electrolyte Electrolyzer. Nano Energy 2019, 61, 576–583. (7) Zhang, Mengtian#; Li, Hao#; Ma, Fei-Xiang; Zhen, Liang; Du, Yue; Xu, Cheng-Yan*. IrCo single-atom Alloy Catalysts with Optimized d-band Center for Aadvanced Alkali-Al/Acid Hybrid Fuel Cell. Chem. Eng. J. 2023, 471, 144187. (8) Zhang, Mengtian#; Li, Hao#; Chen, Junxiang; Yi, Luocai; Shao, Ping; Xu, Cheng-Yan*; Wen, Zhenhai*. Nitrogen-doped Graphite Encapsulating RuCo Nanoparticles toward High-Activity Catalysis of Water Oxidation and Reduction. Chem. Eng. J. 2021, 422, 130077. (9) Zhang, Mengtian#;Li, Hao#; Chen, Junxiang; Ma, Fei-Xiang; Zhen, Liang; Wen, Zhenhai*; Xu, Cheng-Yan*. Transition Metal (Co, Ni, Fe, Cu) Single-Atom Catalysts Anchored on 3D Nitrogen-Doped Porous Carbon Nanosheets as Efficient Oxygen Reduction Electrocatalysts for Zn-Air Battery. Small 2022, 18 (34), 2202476. (10) Li, Hao#; Zhang, Mengtian#;Wang Mi*; Du, Minghao; Wang, Zijian; Zou, Yongxing; Pan, Guangxing; Zhang, Jiaheng*. Balancing Edge Defects and Graphitization in a Pt-Fe/Carbon Electrocatalyst for High-Power-Density and Durable Flow Seawater-Al/Acid Hybrid Fuel Cells and Zn-Air Batteries. Adv. Sci. 2024, 11 (41), e2308923. (11) Li, Hao#; Zhang, Mengtian#; Yi, Luocai; Liu, Yangjie; Chen, Kai; Shao, Ping; Wen, Zhenhai*. Ultrafine Ru Nanoparticles Confined in 3D Nitrogen-Doped Porous Carbon Nanosheet Networks for Alkali-Acid Zn-H2 Hybrid Battery. Appl. Catal. B: Environ. 2021, 280, 119412.
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