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Heterostructures for Electrochemical Hydrogen Evolution Reaction: A Review

机译:电化学析氢反应的异质结构研究进展

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摘要

Developing sustainable and renewable energy sources along with efficient energy storage and conversion technologies is vital to address environmental and energy challenges. Electrochemical water splitting coupling with grid-scale renewable energy harvesting technologies is becoming one of the most promising approaches. Besides, hydrogen with the highest mass-energy density of any fuel is regarded as the ultimate clean energy carrier. The realization of practical water splitting depends heavily on the development of low-cost, highly active, and durable catalysts for hydrogen evolution reactions (HERs) and oxygen evolution reactions (OERs). Recently, heterostructured catalysts, which are generally composed of electrochemical active materials and various functional additives, have demonstrated extraordinary electrocatalytic performance toward HER and OER, and particularly a number of precious-metal-free heterostructures delivered comparable activity with precious-metal-based catalysts. Herein, an overview is presented of recent research progress on heterostructured HER catalysts. It starts with summarizing the fundamentals of HER and approaches for evaluating HER activity. Then, the design and synthesis of heterostructures, electrochemical performance, and the related mechanisms for performance enhancement are discussed. Finally, the future opportunities and challenges are highlighted for the development of heterostructured HER catalysts from the points of view of both fundamental understandings and practical applications.
机译:开发可持续和可再生能源以及高效的能源存储和转换技术对于应对环境和能源挑战至关重要。电化学水分解与网格规模可再生能源收集技术的结合正成为最有前途的方法之一。此外,在所有燃料中具有最高质量能密度的氢气被认为是最终的清洁能源载体。实际的水分解的实现在很大程度上取决于用于氢释放反应(HER)和氧释放反应(OER)的低成本,高活性和耐用催化剂的开发。近来,通常由电化学活性材料和各种功能性添加剂组成的异质结构催化剂对HER和OER表现出非凡的电催化性能,特别是许多无贵金属的杂结构提供了与贵金属基催化剂相当的活性。在此,概述了关于异结构HER催化剂的最新研究进展。它从总结HER的基础知识和评估HER活动的方法开始。然后,讨论了异质结构的设计与合成,电化学性能以及提高性能的相关机理。最后,从基本理解和实际应用的观点出发,着重指出了异质结构HER催化剂开发的未来机遇和挑战。

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