Wang Shan, Lu Aolin, Zhong Chuan-Jian
Department of Chemistry, State University of New York at Binghamton, Binghamton, NY, 13902, USA.
Nano Converg. 2021 Feb 11;8(1):4. doi: 10.1186/s40580-021-00254-x.
As a promising substitute for fossil fuels, hydrogen has emerged as a clean and renewable energy. A key challenge is the efficient production of hydrogen to meet the commercial-scale demand of hydrogen. Water splitting electrolysis is a promising pathway to achieve the efficient hydrogen production in terms of energy conversion and storage in which catalysis or electrocatalysis plays a critical role. The development of active, stable, and low-cost catalysts or electrocatalysts is an essential prerequisite for achieving the desired electrocatalytic hydrogen production from water splitting for practical use, which constitutes the central focus of this review. It will start with an introduction of the water splitting performance evaluation of various electrocatalysts in terms of activity, stability, and efficiency. This will be followed by outlining current knowledge on the two half-cell reactions, hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), in terms of reaction mechanisms in alkaline and acidic media. Recent advances in the design and preparation of nanostructured noble-metal and non-noble metal-based electrocatalysts will be discussed. New strategies and insights in exploring the synergistic structure, morphology, composition, and active sites of the nanostructured electrocatalysts for increasing the electrocatalytic activity and stability in HER and OER will be highlighted. Finally, future challenges and perspectives in the design of active and robust electrocatalysts for HER and OER towards efficient production of hydrogen from water splitting electrolysis will also be outlined.
作为一种有前景的化石燃料替代品,氢已成为一种清洁的可再生能源。一个关键挑战是高效制氢以满足氢的商业规模需求。水电解是在能量转换和存储方面实现高效制氢的一条有前景的途径,其中催化或电催化起着关键作用。开发活性高、稳定性好且成本低的催化剂或电催化剂是实现从水电解中获得实际应用所需的电催化制氢的必要前提,这构成了本综述的核心重点。它将首先介绍各种电催化剂在活性、稳定性和效率方面的水电解性能评估。接下来将概述关于两个半电池反应,即析氢反应(HER)和析氧反应(OER),在碱性和酸性介质中的反应机理的当前知识。将讨论纳米结构的贵金属和非贵金属基电催化剂设计与制备的最新进展。将突出探索纳米结构电催化剂的协同结构、形态、组成和活性位点以提高HER和OER中的电催化活性和稳定性的新策略和见解。最后,还将概述在设计用于HER和OER的活性且稳健的电催化剂以实现从水电解高效制氢方面的未来挑战和前景。