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氧参与电催化中的电子自旋调制工程

Electron spin modulation engineering in oxygen-involved electrocatalysis.

作者信息

Yu Yue, Xue Dongping, Xia Huicong, Zhang Xiaoyu, Zhao Shuyan, Wei Yifan, Du Yu, Zhou Ying, Yan Wenfu, Zhang Jianan

机构信息

College of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, People's Republic of China.

Key Laboratory of Advanced Energy Catalytic and Functional Material Preparation of Zhengzhou City, Zhengzhou 450012, People's Republic of China.

出版信息

J Phys Condens Matter. 2022 Jul 5;34(36). doi: 10.1088/1361-648X/ac7995.

Abstract

Electrocatalytic oxygen reduction reaction (ORR) and oxygen evolution reduction (OER) are regarded as the key reactions via the sustainable system (fuel cell and water splitting), respectively. In OER, the transition from singlet oxygen species to triplet oxygen molecules is involved, meanwhile the ORR involves the transition from triplet oxygen molecules to singlet oxygen species. However, in these processes, the number of unpaired electrons is not conserved, which is not thermodynamically favorable and creates an additional energy barrier. Fortunately, regulating the electrocatalysis by spin-state modulation enables a unique effect on the catalytic performance, but the current understanding on spin-state engineering for electro-catalyzing ORR and OER is still insufficient. Herein, this review summarized the in-spin engineering for the state-of-the-art ORR and OER electrocatalysts. It began by introducing engineering of spin-state to efilling for ORR and OER process, and then moved to spin polarization and spin-pinning effect for OER process. Various designed strategies focusing on how to regulate the spin-state of the active center have been summarized up. The connectivity of the structures of typical ORR (e.g. metal-nitrogen-carbon) and OER (e.g. design strategies oxides, metal organic frameworks) catalysts depending on the spin level is also discussed. Finally, we present the outlook from the aspects of template catalysts, characterization methods, regulation strategies, theoretical calculations, which will further expand the possibility of better electrocatalytic performance through spin-state modulation. This review concluded some open suggestions and prospects, which are worthy of the community's future work.

摘要

电催化氧还原反应(ORR)和析氧反应(OER)分别被视为可持续系统(燃料电池和水分解)中的关键反应。在OER中,涉及从单线态氧物种到三线态氧分子的转变,同时ORR涉及从三线态氧分子到单线态氧物种的转变。然而,在这些过程中,未成对电子的数量不守恒,这在热力学上是不利的,并产生了额外的能量障碍。幸运的是,通过自旋态调制来调节电催化作用对催化性能具有独特的影响,但目前对用于电催化ORR和OER的自旋态工程的理解仍然不足。在此,本综述总结了用于最先进的ORR和OER电催化剂的自旋工程。首先介绍了用于ORR和OER过程的自旋态工程以实现电子填充,然后转向OER过程的自旋极化和自旋钉扎效应。总结了各种旨在调节活性中心自旋态的设计策略。还讨论了典型的ORR(如金属 - 氮 - 碳)和OER(如氧化物、金属有机框架的设计策略)催化剂的结构连通性与自旋水平的关系。最后,我们从模板催化剂、表征方法、调节策略、理论计算等方面展望未来,这将进一步拓展通过自旋态调制实现更好电催化性能的可能性。本综述总结了一些开放性建议和前景,值得该领域未来的研究工作参考。

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