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通过阴离子调制操纵动态表面重构用于电催化水氧化的研究进展

Progress in Manipulating Dynamic Surface Reconstruction via Anion Modulation for Electrocatalytic Water Oxidation.

作者信息

He Zexing, Ajmal Muhammad, Zhang Minghui, Liu Xiaokang, Huang Zhen-Feng, Shi Chengxiang, Gao Ruijie, Pan Lun, Zhang Xiangwen, Zou Ji-Jun

机构信息

Key Laboratory for Green Chemical Technology of the Ministry of Education, Institute of Molecular Plus, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.

Collaborative Innovative Center of Chemical Science and Engineering, Tianjin University, Tianjin, 300072, China.

出版信息

Adv Sci (Weinh). 2023 Oct;10(29):e2304071. doi: 10.1002/advs.202304071. Epub 2023 Aug 8.

Abstract

The development of efficient and economical electrocatalysts for oxygen evolution reaction (OER) is of paramount importance for the sustainable production of renewable fuels and energy storage systems; however, the sluggish OER kinetics involving multistep four proton-coupled electron transfer hampers progress in these systems. Fortunately, surface reconstruction offers promising potential to improve OER catalyst design. Anion modulation plays a crucial role in controlling the extent of surface reconstruction and positively persuading the reconstructed species' performances. This review starts by providing a general explanation of how various types of anions can trigger dynamic surface reconstruction and create different combinations with pre-catalysts. Next, the influences of anion modulation on manipulating the surface dynamic reconstruction process are discussed based on the in situ advanced characterization techniques. Furthermore, various effects of survived anionic groups in reconstructed species on water oxidation activity are further discussed. Finally, the challenges and prospects for the future development directions of anion modulation for redirecting dynamic surface reconstruction to construct highly efficient and practical catalysts for water oxidation are proposed.

摘要

开发高效且经济的析氧反应(OER)电催化剂对于可再生燃料的可持续生产和储能系统至关重要;然而,涉及多步四质子耦合电子转移的缓慢OER动力学阻碍了这些系统的发展。幸运的是,表面重构为改进OER催化剂设计提供了有前景的潜力。阴离子调制在控制表面重构程度和积极提升重构物种的性能方面起着关键作用。本综述首先总体解释各种类型的阴离子如何引发动态表面重构并与预催化剂形成不同组合。接下来,基于原位先进表征技术讨论阴离子调制对操纵表面动态重构过程的影响。此外,进一步讨论了重构物种中存活的阴离子基团对水氧化活性的各种影响。最后,提出了阴离子调制未来发展方向的挑战和前景,即通过引导动态表面重构来构建高效实用的水氧化催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cef5/10582449/77002c5c35ef/ADVS-10-2304071-g008.jpg

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