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首页> 外文期刊>Angewandte Chemie >A Highly Selective Copper-Indium Bimetallic Electrocatalyst for the Electrochemical Reduction of Aqueous CO2 to CO
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A Highly Selective Copper-Indium Bimetallic Electrocatalyst for the Electrochemical Reduction of Aqueous CO2 to CO

机译:一种高选择性铜铟双金属电催化剂,用于将CO2水溶液电化学还原为CO

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摘要

The challenge in the electrochemical reduction of aqueous carbon dioxide is in designing a highly selective, energy-efficient, and non-precious-metal electrocatalyst that minimizes the competitive reduction of proton to form hydrogen during aqueous CO2 conversion. A non-noble metal electrocatalyst based on a copper-indium (Cu-In) alloy that selectively converts CO2 to CO with a low overpotential is reported. The electrochemical deposition of In on rough Cu surfaces led to Cu-In alloy surfaces. DFT calculations showed that the In preferentially located on the edge sites rather than on the corner or flat sites and that the d-electron nature of Cu remained almost intact, but adsorption properties of neighboring Cu was perturbed by the presence of In. This preparation of non-noble metal alloy electrodes for the reduction of CO2 provides guidelines for further improving electrocatalysis.
机译:电化学还原含水二氧化碳的挑战在于设计一种高度选择性,高能效且非贵金属的电催化剂,该催化剂应最大程度地减少在含水二氧化碳转化过程中质子竞争性还原形成氢的质子。报道了一种基于铜-铟(Cu-In)合金的非贵金属电催化剂,该催化剂选择性地将CO2转化为具有低过电势的CO。 In在粗糙的Cu表面上的电化学沉积导致形成Cu-In合金表面。 DFT计算表明,In优先位于边缘位置,而不是位于拐角或平坦位置,并且Cu的d电子性质几乎保持不变,但是相邻的Cu的吸附性能因In的存在而受到干扰。用于减少CO 2的这种非贵金属合金电极的制备为进一步改善电催化作用提供了指导。

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