Olowoyo Joshua O, Kriek Roelof J
Electrochemistry for Energy & Environment Group, Research Focus Area: Chemical Resource Beneficiation (CRB), Private Bag X6001, North-West University, Potchefstroom, 2520, South Africa.
Small. 2022 Oct;18(41):e2203125. doi: 10.1002/smll.202203125. Epub 2022 Aug 22.
Electrocatalytic water splitting is a promising and viable technology to produce clean, sustainable, and storable hydrogen as an energy carrier. However, to meet the ever-increasing global energy demand, it is imperative to develop high-performance non-precious metal-based electrocatalysts for the oxygen evolution reaction (OER), as the OER is considered the bottleneck for electrocatalytic water splitting. Spinels, in particular, are considered promising OER electrocatalysts due to their unique properties, precise structures, and compositions. Herein, the recent progress on the application of bimetallic-based spinels (AFe O , ACo O , and AMn O ; where A = Ni, Co, Cu, Mn, and Zn) as electrocatalysts for the OER is presented. The fundamental concepts of the OER are highlighted after which the family of spinels, their general formula, and classifications are introduced. This is followed by an overview of the various classifications of bimetallic-based spinels and their recent developments and applications as OER electrocatalysts, with special emphasis on enhancing strategies that have been formulated to improve the OER performance of these spinels. In conclusion, this review summarizes all studies mentioned therein and provides the challenges and future perspectives for bimetallic-based spinel OER electrocatalysts.
电催化水分解是一种很有前景且可行的技术,可生产清洁、可持续且可储存的氢气作为能量载体。然而,为了满足不断增长的全球能源需求,开发用于析氧反应(OER)的高性能非贵金属基电催化剂势在必行,因为OER被认为是电催化水分解的瓶颈。特别是尖晶石,由于其独特的性质、精确的结构和组成,被认为是很有前景的OER电催化剂。在此,介绍了双金属基尖晶石(AFeO、ACoO和AMnO;其中A = Ni、Co、Cu、Mn和Zn)作为OER电催化剂应用的最新进展。在介绍尖晶石族、其通式和分类之前,先强调了OER的基本概念。接下来概述了双金属基尖晶石的各种分类及其作为OER电催化剂的最新发展和应用,特别强调了为提高这些尖晶石的OER性能而制定的增强策略。总之,本综述总结了其中提到的所有研究,并给出了双金属基尖晶石OER电催化剂面临的挑战和未来展望。