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用于析氢反应的硫化镍和磷化镍电催化剂:挑战与未来展望

Nickel sulfide and phosphide electrocatalysts for hydrogen evolution reaction: challenges and future perspectives.

作者信息

Shahroudi Ali, Esfandiari Mahsa, Habibzadeh Sajjad

机构信息

Surface Reaction and Advanced Energy Materials Laboratory, Chemical Engineering Department, Amirkabir University of Technology (Tehran Polytechnic) Tehran Iran

出版信息

RSC Adv. 2022 Oct 17;12(45):29440-29468. doi: 10.1039/d2ra04897c. eCollection 2022 Oct 11.

Abstract

The search for environmentally friendly and sustainable energy sources has become necessary to alleviate the issues associated with the consumption of fossil fuel such as air pollution and global warming. Furthermore, this is significant considering the exhaustible resources and burgeoning energy demand globally. In this regard, hydrogen, a clean fuel with high energy density, is considered a reliable alternative energy source. The hydrogen evolution reaction (HER) is one of the most promising methods to produce green hydrogen from water on a large scale. However, the HER needs effective electrocatalysts to address the concerns of energy consumption; thus, finding active materials has recently been the main focus of researchers. Among the various electrocatalysts, nickel sulfides and phosphides and their derivatives with low cost, high abundance, and relatively straightforward preparation have shown high HER activity. In this review, we compare the diverse methods in the synthesis of nickel sulfides and phosphides together with effective synthesis parameters. Also, the optimum conditions for the preparation of the desired active materials and their properties are provided. Then, the performance of nickel sulfide and phosphide electrocatalysts in the HER is addressed. The HER activity of the various crystalline phases is compared, and their most active crystalline phases are introduced. Finally, the present challenges and perspectives for future HER electrocatalysts are presented.

摘要

寻找环境友好且可持续的能源已成为缓解与化石燃料消耗相关问题(如空气污染和全球变暖)的必要举措。此外,鉴于全球范围内资源的枯竭以及不断增长的能源需求,这一点意义重大。在这方面,氢气作为一种具有高能量密度的清洁燃料,被视为可靠的替代能源。析氢反应(HER)是大规模从水中制取绿色氢气最具前景的方法之一。然而,析氢反应需要有效的电催化剂来解决能源消耗问题;因此,寻找活性材料最近一直是研究人员的主要关注点。在各种电催化剂中,硫化镍、磷化镍及其衍生物成本低、储量丰富且制备相对简单,已显示出较高的析氢活性。在本综述中,我们比较了硫化镍和磷化镍合成中的各种方法以及有效的合成参数。此外,还提供了制备所需活性材料的最佳条件及其性能。然后,阐述了硫化镍和磷化镍电催化剂在析氢反应中的性能。比较了各种晶相的析氢活性,并介绍了它们最具活性的晶相。最后,介绍了当前析氢电催化剂面临的挑战以及未来的发展前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b1a/9575961/64ee5a738c8e/d2ra04897c-f1.jpg

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