Electronic-Structure-Modulated Cu,Co-Coanchored N-Doped Nanocarbon as a Difunctional Electrocatalyst for Hydrogen Evolution and Oxygen Reduction Reactions

Author:

Cao Liyun1,Liu Rui1,Huang Yixuan2,Chu Dewei2,Li Mengyao2ORCID,Xu Guoting3,Li Xiaoyi1,Huang Jianfeng1,Zhao Yong1,Feng Liangliang1ORCID

Affiliation:

1. School of Materials Science and Engineering, International S&T Cooperation Foundation of Shaanxi Province, Shaanxi University of Science and Technology, Xi’an 710021, China

2. School of Materials Science and Engineering, The University of New South Wales, Sydney, NSW 2052, Australia

3. College of Chemistry and Environmental Sciences, Kashi University, Kashi 844000, China

Abstract

To alleviate the problems of environmental pollution and energy crisis, aggressive development of clean and alternative energy technologies, in particular, water splitting, metal–air batteries, and fuel cells involving two key half reactions comprising hydrogen evolution reaction (HER) and oxygen reduction (ORR), is crucial. In this work, an innovative hybrid comprising heterogeneous Cu/Co bimetallic nanoparticles homogeneously dispersed on a nitrogen-doped carbon layer (Cu/Co/NC) was constructed as a bifunctional electrocatalyst toward HER and ORR via a hydrothermal reaction along with post-solid-phase sintering technique. Thanks to the interfacial coupling and electronic synergism between the Cu and Co bimetallic nanoparticles, the Cu/Co/NC catalyst showed improved catalytic ORR activity with a half-wave potential of 0.865 V and an excellent stability of more than 30 h, even compared to 20 wt% Pt/C. The Cu/Co/NC catalyst also exhibited excellent HER catalytic performance with an overpotential of below 149 mV at 10 mA/cm2 and long-term operation for over 30 h.

Funder

National Natural Science Foundation of China

Key Program for International S&T Cooperation Projects of Shaanxi Province

Key Research and Development Program of Shaanxi

Publisher

MDPI AG

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