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From single crystal surfaces to single atoms: investigating active sites in electrocatalysis

机译:从单晶表面到单个原子:在电催化作用调查活动的网站

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摘要

Electrocatalytic processes will undoubtedly be at the heart of energising future transportation and technology with the added importance of being able to create the necessary fuels required to do so in an environmentally friendly and cost effective manner. For this to be successful two almost mutually exclusive surface properties need to be reconciled, namely producing highly active/reactive surface sites that exhibit long term stability. This article reviews the various approaches which have been undertaken to study the elusive nature of these active sites on metal surfaces which are considered as adatoms or clusters of adatoms with low coordination number. This includes the pioneering studies at extended well defined stepped single crystal surfaces using cyclic voltammetry up to the highly sophisticated in situ electrochemical imaging techniques used to study chemically synthesised nanomaterials. By combining the information attained from single crystal surfaces, individual nanoparticles of defined size and shape, density functional theory calculations and new concepts such as mesoporous multimetallic thin films and single atom electrocatalysts new insights into the design and fabrication of materials with highly active but stable active sites can be achieved. The area of electrocatalysis is therefore not only a fascinating and exciting field in terms of realistic technological and economical benefits but also from the fundamental understanding that can be acquired by studying such an array of interesting materials.
机译:Electrocatalytic过程无疑将是充满活力的核心交通和未来技术与增加的重要性能够创建所需的必要的燃料所以在环保和成本有效的方式。几乎需要互斥的表面属性和好,即产生高度主动/被动表面网站展示长术语的稳定性。方法进行研究难以捉摸的这些活跃的站点在金属的性质考虑吸附原子或表面集群的吸附原子配位数低。这包括开创性研究扩展定义良好的单晶表面用循环伏安法高复杂的原位电化学成像技术用于研究化学合成纳米材料。从单晶表面,达到个体纳米粒子的大小和形状定义,密度功能理论计算和新概念如介孔多金属薄膜和单原子electrocatalysts新的见解材料的设计和制造高度活跃但稳定活跃的网站实现。因此不仅一个有趣的和令人兴奋的领域的现实的技术和基本的经济效益也理解,可以通过学习来获得这样一系列的有趣的材料。

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