Improved Alkaline Hydrogen Evolution Performance of Dealloying Fe75−xCoxSi12.5B12.5 Electrocatalyst

Author:

Zhong Si-Cheng1,Cui Zhe1,Li Jia123,Tian Guang-Run1,Zhou Zhong-Hong1,Jiao Hong-Fei1,Xiong Jie-Fu4,Wang Li-Chen4,Xiang Jun1,Wu Fu-Fa1,Zhao Rong-Da1

Affiliation:

1. School of Materials Science and Engineering, Liaoning University of Technology, Jinzhou 121001, China

2. School of Material Science and Engineering, China University of Mining and Technology, Xuzhou 221008, China

3. Innovation Center for Applied Magnetics Co., Ltd., Ningbo 315201, China

4. Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China

Abstract

The electrocatalytic performance of a Fe65Co10Si12.5B12.5 Fe-based compounds toward alkaline hydrogen evolution reaction (HER) is enhanced by dealloying. The dealloying process produced a large number of nanosheets on the surface of NS-Fe65Co10Si12.5B12.5, which greatly increased the specific surface area of the electrode. When the dealloying time is 3 h, the overpotential of NS-Fe65Co10Si12.5B12.5 is only 175.1 mV at 1.0 M KOH and 10 mA cm−2, while under the same conditions, the overpotential of Fe65Co10Si12.5B12.5 is 215 mV, which is reduced. In addition, dealloying treated electrodes also show better HER performance than un-dealloying treated electrodes. With the increase in Co doping amount, the overpotential of the hydrogen evolution reaction decreases, and the hydrogen evolution activity is the best when the addition amount of Co is 10%. This work not only provides a basic understanding of the relationship between surface activity and the dealloying of HER catalysts, but also paves a new way for doping transition metal elements in Fe-based electrocatalysts working in alkaline media.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Liaoning Province

Publisher

MDPI AG

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