Alpha-Nickel Hydroxide Coating of Metallic Nickel for Enhanced Alkaline Hydrogen Evolution

被引:11
作者
Xue, Song [1 ]
Liang, Yunchang [2 ,3 ]
Hou, Shujin [4 ]
Zhang, Yajing [1 ,5 ]
Jiang, Heqing [1 ]
机构
[1] Chinese Acad Sci, Qingdao Inst Bioenergy & Bioproc Technol, Qingdao Key Lab Funct Membrane Mat & Membrane Tec, Qingdao 266101, Peoples R China
[2] Ecole Polytech Fed Lausanne EPFL, Max Planck EPFL Lab Mol Nanosci & Technol, CH-1015 Lausanne, Switzerland
[3] Ecole Polytech Fed Lausanne EPFL, Inst Phys IPHYS, CH-1015 Lausanne, Switzerland
[4] Tech Univ Munich, Dept Phys, Phys Energy Convers & Storage, James Franck Str 1, D-85748 Garching, Germany
[5] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
基金
中国博士后科学基金;
关键词
electrolysis; hydrogen evolution; nickel; synergy; water splitting; OXYGEN EVOLUTION; ELECTRODES; ELECTROCATALYST; OXIDE; NANOPARTICLES; MECHANISM; FOAM;
D O I
10.1002/cssc.202201072
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, alkaline hydrogen evolution reaction (HER) processes of three typical nickel-based electrocatalysts [i.e., Ni, alpha-Ni(OH)(2), and beta-Ni(OH)(2)] were investigated to probe critical factors that determine the activity and durability. The HER activity trend was observed as Ni >>alpha-Ni(OH)(2) > beta-Ni(OH)(2), likely attributed to a synergy between metallic Ni and Ni(OH)(2) components on the Ni surface and fast water dissociation kinetics on the alpha-Ni(OH)(2) surface. With the HER proceeding, the metallic Ni surface, however, gradually became alpha-Ni(OH)(2), and alpha-Ni(OH)(2) surface ultimately transformed into beta-phase, leading to a dramatic activity decrease of Ni electrodes. Therefore, Ni electrodes were coated with alpha-Ni(OH)(2) nanosheets to slow down the nickel hydroxylation and optimize the surface ratio of Ni(OH)(2) to metallic Ni. This simple coating procedure enhanced both activity and durability of Ni electrocatalysts.
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页数:10
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