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用于电化学水分解的纳米结构金属磷化物基催化剂:综述

Nanostructured Metal Phosphide Based Catalysts for Electrochemical Water Splitting: A Review.

作者信息

Bodhankar Pradnya M, Sarawade Pradip B, Kumar Prashant, Vinu Ajayan, Kulkarni Aniruddha P, Lokhande Chandrakant D, Dhawale Dattatray S

机构信息

National Centre for Nanoscience and Nanotechnology, University of Mumbai, Vidyanagari, Santacruz, Mumbai, 400098, India.

Department of Physics, University of Mumbai, Vidyanagari, Santacruz, Mumbai, 400098, India.

出版信息

Small. 2022 May;18(21):e2107572. doi: 10.1002/smll.202107572. Epub 2022 Mar 13.

Abstract

Amongst various futuristic renewable energy sources, hydrogen fuel is deemed to be clean and sustainable. Electrochemical water splitting (EWS) is an advanced technology to produce pure hydrogen in a cost-efficient manner. The electrocatalytic hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) are the vital steps of EWS and have been at the forefront of research over the past decades. The low-cost nanostructured metal phosphide (MP)-based electrocatalysts exhibit unconventional physicochemical properties and offer very high turnover frequency (TOF), low over potential, high mass activity with improved efficiency, and long-term stability. Therefore, they are deemed to be potential electrocatalysts to meet practical challenges for supporting the future hydrogen economy. This review discusses the recent research progress in nanostructured MP-based catalysts with an emphasis given on in-depth understanding of catalytic activity and innovative synthetic strategies for MP-based catalysts through combined experimental (in situ/operando techniques) and theoretical investigations. Finally, the challenges, critical issues, and future outlook in the field of MP-based catalysts for water electrolysis are addressed.

摘要

在各种未来可再生能源中,氢燃料被认为是清洁且可持续的。电化学水分解(EWS)是一种以具有成本效益的方式生产纯氢的先进技术。电催化析氢反应(HER)和析氧反应(OER)是EWS的关键步骤,并且在过去几十年一直处于研究前沿。低成本的基于纳米结构金属磷化物(MP)的电催化剂展现出非常规的物理化学性质,并具有非常高的周转频率(TOF)、低过电位、高的质量活性以及更高的效率和长期稳定性。因此,它们被认为是应对实际挑战以支持未来氢能经济的潜在电催化剂。本综述讨论了基于纳米结构MP的催化剂的最新研究进展,重点是通过结合实验(原位/操作数技术)和理论研究深入理解催化活性以及MP基催化剂的创新合成策略。最后,阐述了基于MP的水电解催化剂领域的挑战、关键问题和未来展望。

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