Li Leigang, Wang Pengtang, Shao Qi, Huang Xiaoqing
State Key Laboratory of Physical Chemistry of Solid Surfaces, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Jiangsu, 215123, China.
Adv Mater. 2021 Dec;33(50):e2004243. doi: 10.1002/adma.202004243. Epub 2021 Mar 21.
Proton exchange membrane (PEM) water electrolyzers hold great significance for renewable energy storage and conversion. The acidic oxygen evolution reaction (OER) is one of the main roadblocks that hinder the practical application of PEM water electrolyzers. Highly active, cost-effective, and durable electrocatalysts are indispensable for lowering the high kinetic barrier of OER to achieve boosted reaction kinetics. To date, a wide spectrum of advanced electrocatalysts has been designed and synthesized for enhanced acidic OER performance, though Ir and Ru based nanostructures still represent the state-of-the-art catalysts. In this Progress Report, recent research progress in advanced electrocatalysts for improved acidic OER performance is summarized. First, fundamental understanding about acidic OER including reaction mechanisms and atomic understanding to acidic OER for rational design of efficient electrocatalysts are discussed. Thereafter, an overview of the progress in the design and synthesis of advanced acidic OER electrocatalysts is provided in terms of catalyst category, i.e., metallic nanostructures (Ir and Ru based), precious metal oxides, nonprecious metal oxides, and carbon based nanomaterials. Finally, perspectives to the future development of acidic OER are provided from the aspects of reaction mechanism investigation and more efficient electrocatalyst design.
质子交换膜(PEM)水电解槽对于可再生能源的存储和转换具有重要意义。酸性析氧反应(OER)是阻碍PEM水电解槽实际应用的主要障碍之一。高活性、高性价比且耐用的电催化剂对于降低OER的高动力学势垒以实现增强的反应动力学是必不可少的。迄今为止,尽管基于Ir和Ru的纳米结构仍然是最先进的催化剂,但人们已经设计并合成了各种各样的先进电催化剂以提高酸性OER性能。在本进展报告中,总结了用于改善酸性OER性能的先进电催化剂的最新研究进展。首先,讨论了对酸性OER的基本理解,包括反应机理以及对酸性OER的原子层面理解,以便合理设计高效电催化剂。此后,根据催化剂类别,即金属纳米结构(基于Ir和Ru)、贵金属氧化物、非贵金属氧化物和碳基纳米材料,概述了先进酸性OER电催化剂的设计和合成进展。最后,从反应机理研究和更高效电催化剂设计的角度对酸性OER的未来发展提出了展望。