首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Subsurface oxide plays a critical role in CO2 activation by Cu(111) surfaces to form chemisorbed CO2 the first step in reduction of CO2
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Subsurface oxide plays a critical role in CO2 activation by Cu(111) surfaces to form chemisorbed CO2 the first step in reduction of CO2

机译:地下氧化物在通过Cu(111)表面活化CO2以形成化学吸附的CO2中起关键作用这是减少CO2的第一步

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摘要

A national priority is to convert CO2 into high-value chemical products such as liquid fuels. Because current electrocatalysts are not adequate, we aim to discover new catalysts by obtaining a detailed understanding of the initial steps of CO2 electroreduction on copper surfaces, the best current catalysts. Using ambient pressure X-ray photoelectron spectroscopy interpreted with quantum mechanical prediction of the structures and free energies, we show that the presence of a thin suboxide structure below the copper surface is essential to bind the CO2 in the physisorbed configuration at 298 K, and we show that this suboxide is essential for converting to the chemisorbed CO2 in the presence of water as the first step toward CO2 reduction products such as formate and CO. This optimum suboxide leads to both neutral and charged Cu surface sites, providing fresh insights into how to design improved carbon dioxide reduction catalysts.
机译:国家优先事项是将二氧化碳转化为高价值的化工产品,例如液体燃料。由于当前的电催化剂不足,我们旨在通过详细了解铜表面上CO2电解还原的初始步骤(最好的当前催化剂)来发现新​​的催化剂。使用利用结构和自由能的量子力学预测解释的环境压力X射线光电子能谱,我们表明在铜表面以下存在薄的亚氧化物结构对于在298 K时以物理吸附构型结合CO2是必不可少的,结果表明,该低氧化物对于在存在水的情况下转化为化学吸附的CO2至关重要,是迈向减少甲酸和CO等CO2还原产物的第一步。这种最佳的低氧化物可导致中性和带电的Cu表面位点,从而为如何设计改进的二氧化碳还原催化剂。

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