Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution
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Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution
Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution
中国化学工程学报(英文版)2022年42卷第2期 页码:380-388
Affiliations:
1. School of Chemistry and Chemical Engineering, State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology,Harbin,China,150001
2. College of Materials Science and Engineering, Yangtze Normal University,Chongqing,China,408100
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纸质出版:2022
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Jiankang Wang, Yajing Wang, Zhongping Yao, 等. Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution[J]. 中国化学工程学报(英文版), 2022,42(2):380-388.
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Jiankang Wang, Yajing Wang, Zhongping Yao, 等. Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution[J]. 中国化学工程学报(英文版), 2022,42(2):380-388.DOI:
SDOI:
Metal-organic framework-derived Ni doped Co3S4 hierarchical nanosheets as a monolithic electrocatalyst for highly efficient hydrogen evolution reaction in alkaline solution
Hierarchical nanostructure construction and electronic structure engineering are commonly employed to increase the electrocatalytic activity of HER electrocatalysts. Herein
Ni doped Co
3
S
4
hierarchical nanosheets on Ti mesh (Ni doped Co
3
S
4
HNS/TM) were successfully prepared by using metal organic framework (MOF) as precursor which was synthesized under ambient condition. Characterization results confirmed this structure and Ni incorporation into Co
3
S
4
lattice as well as the modified electronic structure of Co
3
S
4
by Ni doping. Alkaline HER performance showed that Ni doped Co
3
S
4
HNS/TM presented outstanding HER activity with 173 mV overpotential at -10 mA·cm
-2
surpassing most of metal sulfide-based electrocatalysts. The hierarchical structure
superior electrical conductivity and electronic structure modulation contributed to the accelerated water dissociation and enhanced intrinsic activity. This work provides a new avenue for synthesizing hierarchical nanostructure and simultaneously tuning the electronic structure to promote HER
performance
which has potential application in designing highly efficient and cost-effective HER nanostructured electrocatalyst.
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相关作者
Wen Wei
Meng Xiangyu
Liu Min
Du Xiaoqiang
Zhang Xiaoshuang
Rui Xue
Runfan Zheng
Yanyan Xie
相关机构
Department of Chemistry, Xinzhou Normal University
Henan Provincial Key Laboratory of Nanocomposites and Applications, Institute of Nanostructured Functional Materials, Huanghe Science and Technology College
School of Chemistry and Chemical Engineering, North University of China
School of Environment and Safety Engineering, North University of China
School of Chemistry and Chemical Engineering, Chongqing University