Carbon-coated cobalt molybdenum oxide as a high-performance electrocatalyst for hydrogen evolution reaction

被引:12
作者
Xu, Ning [1 ]
Cao, Guoxuan [1 ]
Gan, Liyong [1 ]
Chen, Zhengjun [1 ]
Zang, Mingjie [1 ]
Wu, Hui [2 ]
Wang, Ping [1 ]
机构
[1] South China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510641, Guangdong, Peoples R China
[2] NIST, NIST Ctr Neutron Res, Gaithersburg, MD 20899 USA
基金
中国国家自然科学基金;
关键词
Water-splitting; Hydrogen evolution reaction; Cobalt molybdenum oxide; Hydroxide nanoplates; EFFICIENT ELECTROCATALYST; ACTIVE ELECTROCATALYST; NICKEL FOAM; WATER; NANOWIRE; COSE2; NANOPARTICLES; CONVERSION; NANOSHEETS; NANOTUBES;
D O I
10.1016/j.ijhydene.2018.10.201
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Synthesis of high-performance and cost-effective catalysts towards the hydrogen evolution reaction (HER) is critical in developing electrochemical water-splitting as a viable energy conversion technique. For non-precious metal Co- and Ni-based catalysts, hydroxides were found to form on the surface of the catalysts under alkaline environments and benefit the catalytic performance, whereas there is limited systematic study on the explicit influence of hydroxides on the electrocatalytic mechanism and performance of these catalysts. Herein, we report a close correlation observed between the amount of the surface hydroxides formed and the resulting electrocatalytic performance of a Co-Mo-O nanocatalyst through careful comprehensive structural and property characterizations. We found that an appropriate amount of hydroxide can be moderated by simply coating the catalyst surface with carbon shells to optimize the catalytic properties. As a result, a carbon-coated Co-Mo-O nanocatalyst was successfully developed and is among the best reported non-precious HER catalysts with a superior electrocatalytic activity and outstanding durability for the HER under alkaline environment. First-principles calculations were further conducted to probe the nature of the active sites and the role of hydroxides in the Co-Mo-O@C/NF catalyst towards the HER. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:23101 / 23108
页数:8
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