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Heterostructured Electrocatalysts for Hydrogen Evolution Reaction Under Alkaline Conditions
Nano-Micro Letters ( IF 26.6 ) Pub Date : 2018-11-07 , DOI: 10.1007/s40820-018-0229-x
Jumeng Wei , Min Zhou , Anchun Long , Yanming Xue , Hanbin Liao , Chao Wei , Zhichuan J. Xu

The hydrogen evolution reaction (HER) is a half-cell reaction in water electrolysis for producing hydrogen gas. In industrial water electrolysis, the HER is often conducted in alkaline media to achieve higher stability of the electrode materials. However, the kinetics of the HER in alkaline medium is slow relative to that in acid because of the low concentration of protons in the former. Under the latter conditions, the entire HER process will require additional effort to obtain protons by water dissociation near or on the catalyst surface. Heterostructured catalysts, with fascinating synergistic effects derived from their heterogeneous interfaces, can provide multiple functional sites for the overall reaction process. At present, the activity of the most active known heterostructured catalysts surpasses (platinum-based heterostructures) or approaches (noble-metal-free heterostructures) that of the commercial Pt/C catalyst under alkaline conditions, demonstrating an infusive potential to break through the bottlenecks. This review summarizes the most representative and recent heterostructured HER catalysts for alkaline medium. The basics and principles of the HER under alkaline conditions are first introduced, followed by a discussion of the latest advances in heterostructured catalysts with/without noble-metal-based heterostructures. Special focus is placed on approaches for enhancing the reaction rate by accelerating the Volmer step. This review aims to provide an overview of the current developments in alkaline HER catalysts, as well as the design principles for the future development of heterostructured nano- or micro-sized electrocatalysts.
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中文翻译:

碱性条件下用于氢生成反应的杂结构电催化剂

氢气析出反应(HER)是水电解中用于产生氢气的半电池反应。在工业水电解中,HER通常在碱性介质中进行,以实现电极材料的更高稳定性。但是,由于前者中的质子浓度低,因此在碱性介质中HER的动力学相对于在酸中的动力学慢。在后一种条件下,整个HER过程将需要付出额外的努力才能通过在催化剂表面附近或表面上的水分解来获得质子。异质结构催化剂,由于其异质界面而具有令人着迷的协同作用,可以为整个反应过程提供多个功能位点。目前,在碱性条件下,活性最高的已知异质结构催化剂的活性超过了商用Pt / C催化剂的活性(基于铂的异质结构)或方法(不含贵金属的异质结构),证明了突破瓶颈的诱人潜力。这篇综述总结了最具代表性和最新的用于碱性介质的异质结构HER催化剂。首先介绍了在碱性条件下HER的基本原理,然后讨论了有/无贵金属基异质结构的异质结构催化剂的最新进展。重点放在通过加快Volmer步骤来提高反应速率的方法上。这篇综述旨在概述碱性HER催化剂的最新发展,
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更新日期:2018-11-07
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