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Electrocatalysts for Hydrogen Evolution in Alkaline Electrolytes: Mechanisms Challenges and Prospective Solutions

机译:碱性电解液中析氢的电催化剂:机理挑战和预期解决方案

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摘要

Hydrogen evolution reaction (HER) in alkaline medium is currently a point of focus for sustainable development of hydrogen as an alternative clean fuel for various energy systems, but suffers from sluggish reaction kinetics due to additional water dissociation step. So, the state‐of‐the‐art catalysts performing well in acidic media lose considerable catalytic performance in alkaline media. This review summarizes the recent developments to overcome the kinetics issues of alkaline HER, synthesis of materials with modified morphologies, and electronic structures to tune the active sites and their applications as efficient catalysts for HER. It first explains the fundamentals and electrochemistry of HER and then outlines the requirements for an efficient and stable catalyst in alkaline medium. The challenges with alkaline HER and limitation with the electrocatalysts along with prospective solutions are then highlighted. It further describes the synthesis methods of advanced nanostructures based on carbon, noble, and inexpensive metals and their heterogeneous structures. These heterogeneous structures provide some ideal systems for analyzing the role of structure and synergy on alkaline HER catalysis. At the end, it provides the concluding remarks and future perspectives that can be helpful for tuning the catalysts active‐sites with improved electrochemical efficiencies in future.
机译:目前,碱性介质中的氢释放反应(HER)是氢可持续发展的焦点,氢可作为各种能源系统的替代清洁燃料,但由于需要额外的水离解步骤,因此反应动力学缓慢。因此,最先进的催化剂在酸性介质中表现出色,而在碱性介质中却失去了相当大的催化性能。这篇综述总结了克服碱性HER动力学问题,合成具有修饰形态的材料以及调节活性位点的电子结构及其作为HER有效催化剂的应用的最新进展。它首先说明了HER的基本原理和电化学原理,然后概述了在碱性介质中高效稳定的催化剂的要求。然后重点介绍了碱性HER的挑战,电催化剂的局限性以及预期解决方案。它进一步描述了基于碳,贵金属和廉价金属的高级纳米结构及其异质结构的合成方法。这些异质结构为分析结构和协同作用对碱性HER催化作用提供了一些理想的系统。最后,它提供了结束语和将来的观点,可有助于将来以提高的电化学效率调节催化剂的活性部位。

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