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高效电催化析氧反应自旋工程策略的最新进展

Recent Advancements on Spin Engineering Strategies for Highly Efficient Electrocatalytic Oxygen Evolution Reactions.

作者信息

Zhao Wenli, Yang Jieyu, Xu Fenghua, Weng Baicheng

机构信息

Department of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan, 410083, China.

出版信息

Small. 2024 Aug;20(34):e2401057. doi: 10.1002/smll.202401057. Epub 2024 Apr 8.

Abstract

Oxygen evolution reaction (OER) is a widely employed half-electrode reaction in oxygen electrochemistry, in applications such as hydrogen evolution, carbon dioxide reduction, ammonia synthesis, and electrocatalytic hydrogenation. Unfortunately, its slow kinetics limits the commercialization of such applications. It is therefore highly imperative to develop highly robust electrocatalysts with high activity, long-term durability, and low noble-metal contents. Previously intensive efforts have been made to introduce the advancements on developing non-precious transition metal electrocatalysts and their OER mechanisms. Electronic structure tuning is one of the most effective and interesting ways to boost OER activity and spin angular momentum is an intrinsic property of the electron. Therefore, modulation on the spin states and the magnetic properties of the electrocatalyst enables the changes on energy associated with interacting electron clouds with radical absorbance, affecting the OER activity and stability. Given that few review efforts have been made on this topic, in this review, the-state-of-the-art research progress on spin-dependent effects in OER will be briefed. Spin engineering strategies, such as strain, crystal surface engineering, crystal doping, etc., will be introduced. The related mechanism for spin manipulation to boost OER activity will also be discussed. Finally, the challenges and prospects for the development of spin catalysis are presented. This review aims to highlight the significance of spin engineering in breaking the bottleneck of electrocatalysis and promoting the practical application of high-efficiency electrocatalysts.

摘要

析氧反应(OER)是氧电化学中广泛应用的半电极反应,应用于析氢、二氧化碳还原、氨合成和电催化加氢等领域。不幸的是,其缓慢的动力学限制了这些应用的商业化。因此,开发具有高活性、长期耐久性和低贵金属含量的高度稳健的电催化剂至关重要。此前,人们已做出大量努力来介绍开发非贵金属过渡金属电催化剂及其析氧反应机理的进展。电子结构调控是提高析氧反应活性最有效且有趣的方法之一,而自旋角动量是电子的固有属性。因此,对电催化剂的自旋态和磁性进行调制能够改变与自由基吸收相互作用的电子云相关的能量,从而影响析氧反应的活性和稳定性。鉴于目前针对该主题的综述较少,本文将简要介绍析氧反应中自旋相关效应的最新研究进展。将介绍自旋工程策略,如应变、晶体表面工程、晶体掺杂等。还将讨论自旋操纵提高析氧反应活性的相关机理。最后,阐述自旋催化发展面临的挑战和前景。本综述旨在突出自旋工程在突破电催化瓶颈和推动高效电催化剂实际应用方面的重要性。

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