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用于析氢的二维电催化剂中的缺陷工程

Defect engineering in two-dimensional electrocatalysts for hydrogen evolution.

作者信息

Xie Junfeng, Yang Xueying, Xie Yi

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes (Ministry of Education), Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Institute of Molecular and Nano Science, Shandong Normal University, Jinan, Shandong 250014, P. R. China.

Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

Nanoscale. 2020 Feb 20;12(7):4283-4294. doi: 10.1039/c9nr09753h.

Abstract

The electrocatalytic hydrogen evolution reaction (HER) is an efficient and economic pathway to generate clean hydrogen energy in a sustainable manner. To improve the HER activity of Earth-abundant catalysts, reducing the dimension of materials is an effective strategy, and in this context two-dimensional (2D) materials have received substantial research attention owing to their large surface area and 2D charge transport channels. However, the thermodynamically stable basal surface of 2D catalysts is usually inactive in catalysis, which significantly impedes further optimization of the 2D HER catalysts. In this Minireview, we highlight in detail that defect engineering in 2D catalysts could bring multiple benefits in improving the HER activity. From the point of view of kinetics, defect sites could serve as active sites for catalyzing the HER process directly, and the introduction of defect structures may result in the optimization of electronic structures of the catalysts, thereby facilitating the HER process. Besides, for catalytically inert substrate materials, the defect sites could act as anchoring sites for catalyst loading, thus realizing efficient HER performance with the aid of enhanced electric conductivity. We anticipated that this Minireview could provide useful guidance for designing advanced HER catalysts in the future.

摘要

电催化析氢反应(HER)是一种以可持续方式产生清洁氢能的高效且经济的途径。为了提高储量丰富的催化剂的析氢活性,减小材料尺寸是一种有效策略,在此背景下,二维(2D)材料因其大表面积和二维电荷传输通道而受到了大量研究关注。然而,二维催化剂热力学稳定的基面通常在催化中不具有活性,这显著阻碍了二维析氢催化剂的进一步优化。在这篇迷你综述中,我们详细强调二维催化剂中的缺陷工程在提高析氢活性方面可带来多种益处。从动力学角度来看,缺陷位点可直接作为催化析氢过程的活性位点,引入缺陷结构可能会导致催化剂电子结构的优化,从而促进析氢过程。此外,对于催化惰性的基底材料,缺陷位点可作为负载催化剂的锚定位点,从而借助增强的电导率实现高效析氢性能。我们预期这篇迷你综述可为未来设计先进的析氢催化剂提供有用指导。

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