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Phase-Controllable Synthesis of Multifunctional 1T-MoSe2 Nanostructures: Applications in Lithium-Ion Batteries, Electrocatalytic Hydrogen Evolution, and the Hydrogenation Reaction Journal article
ChemElectroChem, 2021,Volume: 8,Issue: 21,Page: 4148-4155
Authors:  Ling, Min;  Jiang, Binbin;  Cao, Xi;  Wu, Tao;  Cheng, Yuansheng;  Zeng, Peiyuan;  Zhang, Liang;  Cheong, Weng Chon Max;  Wu, Konglin;  Huang, Aijian;  Wei, Xianwen
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Hydrogen Evolution Reaction  Lithium-ion Batteries  Mose2  Phase Engineering  Transfer Hydrogenation  
Rationally engineered Co and N co-doped WS2 as bifunctional catalysts for pH-universal hydrogen evolution and oxidative dehydrogenation reactions Journal article
Nano Research, 2021,Volume: 15,Issue: 3,Page: 1993-2002
Authors:  Ling, Min;  Li, Na;  Jiang, Binbin;  Tu, Renyong;  Wu, Tao;  Guan, Pingli;  Ye, Yin;  Cheong, Weng Chon;  Sun, Kaian;  Liu, Shoujie;  Wu, Konglin;  Huang, Aijian;  Wei, Xianwen
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Bifunctional Catalyst  Density Functional Theory (Dft) Calculation  Electrolysis Of Water  Heteroatomic Doping  Ws2  
Regulating the electronic structure of NiFe layered double hydroxide/reduced graphene oxide by Mn incorporation for high-efficiency oxygen evolution reaction Mn调控NiFe LDH/rGO Journal article
Science China Materials, 2021,Volume: 64,Issue: 11,Page: 2729-2738
Authors:  Jiang, Binbin;  Cheong, Weng Chon;  Tu, Renyong;  Sun, Kaian;  Liu, Shoujie;  Wu, Konglin;  Shang, Hengshuai;  Huang, Aijian;  Wang, Miao;  Zheng, Lirong;  Wei, Xianwen;  Chen, Chen
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Dft Calculations  Electrocatalysts  Mn  Nife Layered Double Hydroxides  Oxygen Evolution Reaction  
Self-assembled multifunctional Fe3O4 hierarchical microspheres: high-efficiency lithium-ion battery materials and hydrogenation catalysts 自组装多功能Fe3O4分级微球: 高效的锂离子电池 材料和加氢催化剂 Journal article
Science China Materials, 2021,Volume: 64,Issue: 5,Page: 1058-1070
Authors:  Wu, Konglin;  Ling, Min;  Zeng, Peiyuan;  Zhang, Liang;  Wu, Tao;  Guan, Pingli;  Cheong, Weng Chon;  Chen, Zheng;  Fang, Zhen;  Wei, Xianwen
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Energy Storage Material  Hierarchical Structure  Hydrogenation Catalyst  Iron Oxide  Lithium-ion Battery  
Atomically dispersed Ni–Ru–P interface sites for high-efficiency pH-universal electrocatalysis of hydrogen evolution Journal article
Nano Energy, 2021,Volume: 80
Authors:  Wu, Konglin;  Sun, Kaian;  Liu, Shoujie;  Cheong, Weng Chon;  Chen, Zheng;  Zhang, Chao;  Pan, Yuan;  Cheng, Yuansheng;  Zhuang, Zewen;  Wei, Xianwen;  Wang, Yu;  Zheng, Lirong;  Zhang, Qinghua;  Wang, Dingsheng;  Peng, Qing;  Chen, Chen;  Li, Yadong
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Electrocatalyst  Hydrogen Evolution  Ni2p Nanocrystal  Ru Single Atom  Synergistic Coupling  
Dopamine polymer derived isolated single-atom site metals/N-doped porous carbon for benzene oxidation Journal article
Chemical Communications, 2020,Volume: 56,Issue: 63,Page: 8916-8919
Authors:  Wu, Konglin;  Zhan, Fei;  Tu, Renyong;  Cheong, Weng Chon;  Cheng, Yuansheng;  Zheng, Lirong;  Yan, Wensheng;  Zhang, Qinghua;  Chen, Zheng;  Chen, Chen
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In situ growth of MoSe2 nanosheets array on Mo foil: An efficient and durable hydrogen evolution electrocatalyst Journal article
Materials Letters, 2020,Volume: 272
Authors:  Wang, Weizhi;  Cao, Huihui;  Li, Wei;  Wu, Junyao;  Sheng, Enhong;  Chen, Zheng;  Cheong, Weng Chon;  Wu, Konglin
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Electrocatalyst  Energy Storage And Conversion  Hydrogen Evolution  Microstructure  Mose2 Nanosheets Array