Recent Advances in Revealing the Electrocatalytic Mechanism for Hydrogen Energy Conversion System

Author:

Cai Mingxin12,Zhang Yiran34,He Peilei125,Zhang Zhicheng34ORCID

Affiliation:

1. Materials Tech Laboratory for Hydrogen & Energy Storage Ningbo Institute of Materials Technology and Engineering Chinese Academy of Sciences Ningbo 315201 China

2. College of Materials Sciences and Opto‐Electronic Technology University of Chinese Academy of Sciences Beijing 100049 China

3. Key Laboratory of Organic Integrated Circuit Ministry of Education & Tianjin Key Laboratory of Molecular Optoelectronic Sciences Department of Chemistry School of Science Tianjin University Tianjin 300072 China

4. Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) Tianjin 300072 China

5. CISRI & NIMTE Joint Innovation Center for Rare Earth Permanent Magnets Ningbo Institute of Material Technology and Engineering Chinese Academy of Sciences Ningbo 315201 China

Abstract

AbstractIn light of the intensifying global energy crisis and the mounting demand for environmental protection, it is of vital importance to develop advanced hydrogen energy conversion systems. Electrolysis cells for hydrogen production and fuel cell devices for hydrogen utilization are indispensable in hydrogen energy conversion. As one of the electrolysis cells, water splitting involves two electrochemical reactions, hydrogen evolution reaction and oxygen evolution reaction. And oxygen reduction reaction coupled with hydrogen oxidation reaction, represent the core electrocatalytic reactions in fuel cell devices. However, the inherent complexity and the lack of a clear understanding of the structure‐performance relationship of these electrocatalytic reactions, have posed significant challenges to the advancement of research in this field. In this work, the recent development in revealing the mechanism of electrocatalytic reactions in hydrogen energy conversion systems is reviewed, including in situ characterization and theoretical calculation. First, the working principles and applications of operando measurements in unveiling the reaction mechanism are systematically introduced. Then the application of theoretical calculations in the design of catalysts and the investigation of the reaction mechanism are discussed. Furthermore, the challenges and opportunities are also summarized and discussed for paving the development of hydrogen energy conversion systems.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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