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首页> 外文期刊>Journal of Catalysis >Grain refinement of self-supported copper electrode by multiple-redox treatment for enhanced carbon dioxide electroreduction towards carbon monoxide generation
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Grain refinement of self-supported copper electrode by multiple-redox treatment for enhanced carbon dioxide electroreduction towards carbon monoxide generation

机译:通过多氧化还原处理来改进自支撑铜电极的晶粒细化,以增强二氧化碳电化朝向一氧化碳产生

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摘要

Inspired by grain refinement in the traditional metal processing, we develop a top-down approach by facile multiple-redox treatment to obtain the downsized Cu crystals over the self-supported copper electrodes for the enhanced selective CO2 electroreduction. Specifically, the treated copper meshes exhibit an increased activity and selectivity for CO production with high Faradaic efficiency of 78% and partial current density of 13.2 mA cm(-2) at the potential of -0.8 V (vs. RHE). This investigation intends to ascribe the enhanced properties to the surface downsized crystals of Cu electrode induced by the multiple-redox treatments. Moreover, the molecular reaction mechanism of the elementary reaction of CO2 conversion to CO is also discussed. This work offers a new top-down strategy to design and preparation of nanosized catalytic catalysts on a self-supported electrode and valuable insights in selective CO2 conversion toward valuable fuels over Cu-based electrodes. (C) 2019 Elsevier Inc. All rights reserved.
机译:灵感来自传统金属加工中的晶粒细化,我们通过容易的多氧化还原处理开发自上而下的方法,以获得用于增强的选择性CO2电极的自支撑铜电极上的缩小化Cu晶体。具体地,经处理的铜网表现出具有78%的高射线效率的CO生产的活性和选择性,并且在-0.8V(Vs.She)的电位下为13.2 mA cm(-2)的部分电流密度。该研究旨在将增强的性质归因于通过多氧化还原处理诱导的Cu电极的表面缩小晶体。此外,还讨论了CO 2转化转化为CO的基本反应的分子反应机理。该作品提供了一种新的自上而下策略,可在自负载电极上设计和制备纳米催化催化剂,并在基于Cu基电极上朝向有价值的燃料的有价值的见解。 (c)2019 Elsevier Inc.保留所有权利。

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