作为水电解氢氧进化催化剂的钴钼基硫化物的合成与改性综述

Jie Zhang, Chunlin Hu, Peng Deng, Yanhong Yin
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摘要

氢能作为化石燃料的替代品受到广泛关注。在各种制氢方法中,水电解是最清洁、最有前途的方法。然而,氢进化反应(HER)和氧进化反应(OER)极大地限制了它的发展。因此,开发低成本、高活性、稳定性好的非贵金属催化剂来替代贵金属催化剂(Pt、RuO2),并进一步降低过电位和能耗是非常必要的。迄今为止,人们一直在努力开发具有电催化性能的过渡金属化合物,如硫化物、氧化物和碳化物材料。特别是过渡金属硫化物作为催化剂发挥着非常重要的作用,因其结构可调、丰度高、制备工艺温和等特点而受到广泛关注。在本文中,我们将重点介绍过渡金属硫化物在水电解催化剂中的作用,尤其是研究最多的几种硫化物,如钴/钼基硫化物和最近报道的均相钴/钼基硫化物,其中钴是关键元素。成分、形态和尺寸是影响这些过渡金属硫化物内在活性、导电性和电子结构的最重要因素。此外,还讨论了碳纳米材料作为载体材料的影响。本综述旨在强调钴和钼基高性能硫化物的巨大潜力,并帮助提高现有硫化物的性能和探索新的改性方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review on synthesis and modification of cobalt-molybdenum based sulfides as hydrogen and oxygen evolution catalysts for water electrolysis

A review on synthesis and modification of cobalt-molybdenum based sulfides as hydrogen and oxygen evolution catalysts for water electrolysis

Hydrogen energy as the alternative to fossil fuel received wide attention. Among different methods of hydrogen production, water electrolysis is the cleanest and most promising method. However, its development is greatly limited by hydrogen evolution reaction (HER) reaction and oxygen evolution reaction (OER) reaction. Therefore, it is very necessary to develop low-cost, high activity, and good stability of non-precious metal catalyst to replace the precious metal catalyst (Pt, RuO2), and to further reduce overpotential and power consumption. To date, great efforts have been made to develop transition metal compounds with electrocatalytic performance, such as sulfides, oxides, and carbides materials. Especially, transition metal sulfides play a very important role as catalysts and have attracted wide attention for their structural adjustability, high abundance, and mild preparation process. In this introduction, we focus on the role of transition metal sulfides in catalysts for water electrolysis, especially in a few most studied sulfides such as cobalt/molybdenum based sulfides and the recently reported homogeneous cobalt-molybdenum based sulfides, in which cobalt acts as a key element. Composition, morphology, and size are the most important factors that influence the intrinsic activity, electrical conductivity, and electronic structure of these transition metal sulfides. Besides, the effect of carbon nanomaterials as carrier materials is also discussed. The aim of this review is to emphasize the great potentials of cobalt and molybdenum based sulfides with high performance, and to help improve the performance of existing sulfides and explore new modification methods.

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