Cobalt Single Atom Heterogeneous Catalyst: Method of Preparation, Characterization, Catalysis, and Mechanism

Baljeet Singh, Surender Kumar, Archana Singh
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引用次数: 2

Abstract

Transition metal nanoparticles and metal oxide have been used extensively for a wide range of applications in electrochemical reactions (HER, ORR, OER) and energy storage (supercapacitors batteries). To make less expensive, the use of transition metal at minimum metal contents without compromising the catalytic activity could be one way. Most of the catalytic process takes place on the surface and reaction dynamic can be manipulated by changing the particle size and shape. For a long time, single metal atom organometallic compounds have been used as a catalyst at the industrial level. However, problems with the homogeneous catalyst to recover back at the end of the process lead to development of heterogeneous single-atom catalysts with equal activity like a homogeneous catalyst. Cobalt single atom has received a tremendous interest of the scientific community due to its excellent catalytic activity and recyclability. Cobalt single-atom catalyst has shown better performance compared with sub-nanometer nanoparticles catalyst for ORR, OER, and HER. This chapter is conferring method of preparation of carbon-based single Co atoms heterogeneous catalyst, their application for ORR, OER, HER reactions, and mechanistic investigations through DFT calculations. The role of single Co metal atoms and anchoring using N or heteroatoms is discussed and compared.
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钴单原子非均相催化剂:制备方法、表征、催化和机理
过渡金属纳米颗粒和金属氧化物在电化学反应(HER, ORR, OER)和能量存储(超级电容器电池)中有着广泛的应用。为了降低成本,在不影响催化活性的情况下使用最低金属含量的过渡金属可能是一种方法。大多数催化过程发生在表面,反应动力学可以通过改变颗粒的大小和形状来控制。长期以来,单金属原子有机金属化合物一直被用作工业一级的催化剂。然而,均相催化剂在反应结束时难以恢复的问题导致了具有与均相催化剂相同活性的非均相单原子催化剂的发展。钴单原子由于其优异的催化活性和可回收性,受到了科学界的极大关注。钴单原子催化剂在ORR、OER和HER上表现出比亚纳米纳米颗粒催化剂更好的性能。本章介绍了碳基单Co原子多相催化剂的制备方法,及其在ORR、OER、HER反应中的应用,并通过DFT计算进行了机理研究。讨论并比较了单钴金属原子与N或杂原子锚定的作用。
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