Understanding the Origin of Reconstruction in Transition Metal Oxide Oxygen Evolution Reaction Electrocatalysts

Author:

Zou Anqi1,Tang Ying1,Wu Chao12,Li Junhua1,Meng Haoyan1,Wang Zhen1,Ma Yifan3,An Hang3,Zhong Haoyin3,Zhang Qi3,Zhang Xin3,Xue Junmin3,Wang Xiaopeng13,Wu Jiagang1ORCID

Affiliation:

1. College of Materials Science and Engineering Sichuan University Chengdu 610065 China

2. Institute of Sustainability for Chemical Energy and Environment (ISCE2) Agency for Science Technology and Research Singapore 627833 Singapore

3. Department of Materials Science and Engineering National University of Singapore Singapore 117575 Singapore

Abstract

AbstractElectrochemical water splitting to generate hydrogen energy fills a gap in the intermittency issues for wind and sunlight power. Transition metal (TM) oxides have attracted significant interest in water oxidation due to their availability and excellent activity. Typically, the transitional metal oxyhydroxides species derived from these metal oxides are often acknowledged as the real catalytic species, due to the irreversible structural reconstruction. Hence, in order to innovatively design new catalyst, it is necessary to provide a comprehensive understanding for the origin of surface reconstruction. In this review, the most recent developments in the reconstruction of transition metal‐based oxygen evolution reaction electrocatalysts were introduced, and various chemical driving forces behind the reconstruction mechanism were discussed. At the same time, specific strategies for modulating pre‐catalysts to achieve controllable reconfiguration, such as metal substituting, increase of structural defect sites, were summarized. At last, the issues for the further understanding and optimization of transition metal oxides compositions based on structural reconstruction were provided.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

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