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从相工程角度理解先进的过渡金属基双电子氧还原电催化剂

Understanding Advanced Transition Metal-Based Two Electron Oxygen Reduction Electrocatalysts from the Perspective of Phase Engineering.

作者信息

Yang Hongyuan, An Na, Kang Zhenhui, Menezes Prashanth W, Chen Ziliang

机构信息

Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-based Functional Materials and Devices, Joint International Research Laboratory of Carbon-Based Functional Materials and Devices, Soochow University, Suzhou, 215123, P. R. China.

Department of Chemistry: Metalorganics and Inorganic Materials, Technische Universität Berlin, Straße des 17 Juni 135, Sekr. C2, 10623, Berlin, Germany.

出版信息

Adv Mater. 2024 Jun;36(25):e2400140. doi: 10.1002/adma.202400140. Epub 2024 Mar 25.

Abstract

Non-noble transition metal (TM)-based compounds have recently become a focal point of extensive research interest as electrocatalysts for the two electron oxygen reduction (2e ORR) process. To efficiently drive this reaction, these TM-based electrocatalysts must bear unique physiochemical properties, which are strongly dependent on their phase structures. Consequently, adopting engineering strategies toward the phase structure has emerged as a cutting-edge scientific pursuit, crucial for achieving high activity, selectivity, and stability in the electrocatalytic process. This comprehensive review addresses the intricate field of phase engineering applied to non-noble TM-based compounds for 2e ORR. First, the connotation of phase engineering and fundamental concepts related to oxygen reduction kinetics and thermodynamics are succinctly elucidated. Subsequently, the focus shifts to a detailed discussion of various phase engineering approaches, including elemental doping, defect creation, heterostructure construction, coordination tuning, crystalline design, and polymorphic transformation to boost or revive the 2e ORR performance (selectivity, activity, and stability) of TM-based catalysts, accompanied by an insightful exploration of the phase-performance correlation. Finally, the review proposes fresh perspectives on the current challenges and opportunities in this burgeoning field, together with several critical research directions for the future development of non-noble TM-based electrocatalysts.

摘要

基于非贵金属过渡金属(TM)的化合物最近作为双电子氧还原(2e ORR)过程的电催化剂成为广泛研究兴趣的焦点。为了有效驱动该反应,这些基于TM的电催化剂必须具有独特的物理化学性质,这强烈依赖于它们的相结构。因此,对相结构采用工程策略已成为前沿科学追求,对于在电催化过程中实现高活性、选择性和稳定性至关重要。这篇综述文章探讨了应用于基于非贵金属TM的化合物用于2e ORR的相工程这一复杂领域。首先,简要阐明了相工程的内涵以及与氧还原动力学和热力学相关的基本概念。随后,重点转向详细讨论各种相工程方法,包括元素掺杂、缺陷产生、异质结构构建、配位调节、晶体设计和多晶型转变,以提高或恢复基于TM的催化剂的2e ORR性能(选择性、活性和稳定性),同时深入探讨相-性能相关性。最后,该综述对这个新兴领域当前的挑战和机遇提出了新的观点,以及基于非贵金属TM的电催化剂未来发展的几个关键研究方向。

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