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Defect engineering in two-dimensional electrocatalysts for hydrogen evolution

机译:在二维缺陷工程electrocatalysts氢进化

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摘要

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.
机译:electrocatalytic氢进化的反应(她)是一种高效、经济的途径生产清洁的氢能源可持续发展的方式。地球上充足的催化剂,减少维度材料是一种有效的战略,这种情况下二维(2 d)材料由于受到实质性的研究关注大的表面积和2 d电荷传输频道。基底表面的2 d催化剂通常是不活跃的在催化,这大大阻碍了进一步优化2 d她的催化剂。小的时候,我们强调在细节缺陷在2 d工程催化剂可以使多个提高她的活动的好处。动力学的角度,缺陷网站作为催化活性位的她直接的过程,引入缺陷结构可能导致的优化催化剂的电子结构,从而促进她的过程。催化地惰性基质材料缺陷可以作为锚定网站的网站催化剂加载,从而实现高效的她增强电气性能与援助导电性。可以为设计提供有用的指导先进的催化剂在未来。

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