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Core-shell nanostructured electrocatalysts for water splitting

机译:核壳纳米electrocatalysts为水分离

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As the cornerstone of the hydrogen economy, water electrolysis consisting of the hydrogen and oxygen evolution reactions (HER and OER) greatly needs cost-efficient electrocatalysts that can decrease the dynamic overpotential and save on energy consumption. Over past years, observable progress has been made by constructing core-shell structures free from or with few noble-metals. They afford particular merits,e.g., a highly-exposed active surface, modulated electronic configurations, strain effects, interfacial synergy, or reinforced stability, to promote the kinetics and electrocatalytic performance of the HER, OER and overall water splitting. So far, a large variety of inorganics (carbon and transition-metal related components) have been introduced into core-shell electrocatalysts. Herein, representative efforts and progress are summarized with a clear classification of core and shell components, to access comprehensive insights into electrochemical processes that proceed on surfaces or interfaces. Finally, a perspective on the future development of core-shell electrocatalysts is offered. The overall aim is to shed some light on the exploration of emerging materials for energy conversion and storage.
机译:氢经济的基石,水电解氢和组成氧气大大进化反应(她和OER)需要有成本效益的electrocatalysts可以减少动态过电压和节省能源消耗。通过构造核壳已经取得了进展结构不受或很少有贵金属。他们承担特定的优点,例如高度暴露的活性表面,调制电子配置,应变效应,界面的协同作用,或加固稳定促进动力学和electrocatalytic她的性能,OER和整体水分裂。(碳和过渡金属相关组件)介绍了成核壳吗electrocatalysts。并与一个明确的进展进行了总结分类的核心和壳组件获得全面的见解电化学过程继续进行表面或接口。核壳的未来发展electrocatalysts提供。阐明新兴的探索材料的能量转换和存储。

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