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电催化氧气反应:最新进展与未来展望。

Electrocatalysis for the oxygen evolution reaction: recent development and future perspectives.

机构信息

Department of Chemistry, National Taiwan University, No. 1, Sec. 4, Roosevelt Rd, Taipei 10617, Taiwan, Republic of China.

State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, 350002, China.

出版信息

Chem Soc Rev. 2017 Jan 23;46(2):337-365. doi: 10.1039/c6cs00328a.

Abstract

There is still an ongoing effort to search for sustainable, clean and highly efficient energy generation to satisfy the energy needs of modern society. Among various advanced technologies, electrocatalysis for the oxygen evolution reaction (OER) plays a key role and numerous new electrocatalysts have been developed to improve the efficiency of gas evolution. Along the way, enormous effort has been devoted to finding high-performance electrocatalysts, which has also stimulated the invention of new techniques to investigate the properties of materials or the fundamental mechanism of the OER. This accumulated knowledge not only establishes the foundation of the mechanism of the OER, but also points out the important criteria for a good electrocatalyst based on a variety of studies. Even though it may be difficult to include all cases, the aim of this review is to inspect the current progress and offer a comprehensive insight toward the OER. This review begins with examining the theoretical principles of electrode kinetics and some measurement criteria for achieving a fair evaluation among the catalysts. The second part of this review acquaints some materials for performing OER activity, in which the metal oxide materials build the basis of OER mechanism while non-oxide materials exhibit greatly promising performance toward overall water-splitting. Attention of this review is also paid to in situ approaches to electrocatalytic behavior during OER, and this information is crucial and can provide efficient strategies to design perfect electrocatalysts for OER. Finally, the OER mechanism from the perspective of both recent experimental and theoretical investigations is discussed, as well as probable strategies for improving OER performance with regards to future developments.

摘要

仍然需要努力寻找可持续、清洁和高效的能源产生方式,以满足现代社会的能源需求。在各种先进技术中,电催化析氧反应(OER)起着关键作用,已经开发出许多新型电催化剂来提高气体析出效率。在这个过程中,人们付出了巨大的努力来寻找高性能的电催化剂,这也激发了新技术的发明,以研究材料的性质或 OER 的基本机制。这些积累的知识不仅为 OER 的机制奠定了基础,而且根据各种研究指出了良好电催化剂的重要标准。尽管可能难以包括所有情况,但本综述的目的是检查当前的进展,并为 OER 提供全面的见解。本综述首先检查了电极动力学的理论原理和一些实现催化剂之间公平评估的测量标准。本综述的第二部分介绍了一些用于进行 OER 活性的材料,其中金属氧化物材料构建了 OER 机制的基础,而非氧化物材料在整体水分解方面表现出非常有前途的性能。本综述还关注了 OER 过程中电催化行为的原位方法,这些信息至关重要,可以为设计完美的 OER 电催化剂提供有效的策略。最后,从最近的实验和理论研究的角度讨论了 OER 机制,以及针对未来发展提高 OER 性能的可能策略。

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