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Nitride‐Derived Copper Modified with Indium as a Selective and Highly Stable Catalyst for the Electroreduction of Carbon Dioxide

机译:铟修饰的氮化物衍生的铜作为二氧化碳电还原的选择性和高度稳定的催化剂

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摘要

The lack of efficient catalysts prevents the electrocatalytic reduction of carbon dioxide from contributing to the pressing target of a carbon‐neutral economy. Indium‐modified copper nitride was identified as a stable electrocatalyst selective toward CO. In2O3/Cu3N showed a Faradaic efficiency of 80 % at 0.5 V overpotential for at least 50 h, in stark contrast to the very limited stability of the benchmark In2O3/Cu2O. Microfabricated systems allowed to correlate activity with highly stable interfaces in indium‐modified copper nitride. In contrast, fast diffusion of indium resulted in rapidly evolving interfaces in the case of the system based on oxide‐derived Cu. A metastable nitrogen species observed by spectroscopic means was proposed as the underlying cause leading to the unchanging interfaces. This work reveals the stabilizing properties of nitride‐derived copper toward high‐performance multicomponent catalysts.
机译:缺乏有效的催化剂会阻止二氧化碳的电催化还原成为碳中和经济的紧迫目标。铟改性的氮化铜被认为是对CO有选择性的稳定的电催化剂。In2O3/ Cu3N在0.5 V的超电势下至少50 h时显示出80%的法拉第效率,这与基准In2O3 / Cu2O的非常有限的稳定性形成鲜明对比。超细加工系统允许将活性与铟改性氮化铜中的高度稳定的界面相关联。相反,在基于氧化物的铜体系中,铟的快速扩散导致界面快速演化。提出了通过光谱学方法观察到的亚稳态氮物种,这是导致界面不变的根本原因。这项工作揭示了氮化物衍生的铜对高性能多组分催化剂的稳定性能。

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