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Computational studies of electrochemical CO2 reduction on chalcogen doped Cu-4 cluster

机译:硫族掺杂Cu-4团簇电化学CO2还原的计算研究

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摘要

By use of the theoretical method of density functional theory (DFT), we systemically investigate the chalcogen doped Cu-4 metal clusters (Cu4O, Cu4S, and Cu4Se) as catalysts for the electrochemical CO2 reduction with toluene as solvent. These doped clusters have efficient catalytic properties which can reduce CO2 to CH4 and a small amount of CH3OH. In the case of CO2 hydrogenation to CH4, the reaction barrier of the Cu4O cluster and Cu4S cluster are reduced by 0.37 eV and 0.15 eV, respectively, compared with the pristine Cu-4 cluster. The calculation results also show the overpotentials for the CO2 hydrogenation to CH4 in the order of Cu4S Cu4O Cu4Se. In addition, the geometry structures, the electronic properties, and the reaction free energies on the chalcogen doped Cu-4 clusters are also discussed to further reveal the reaction mechanism in the CO2 electroreduction process. We hope that our present work will enlighten extensive studies on the modified electrode to decrease the limiting potential and provide a reference for the subsequent studies. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文采用密度泛函理论(DFT)的理论方法,系统地研究了以甲苯为溶剂的硫族掺杂Cu-4金属团簇(Cu4O、Cu4S和Cu4Se)作为电化学CO2还原催化剂的研究。这些掺杂团簇具有高效的催化性能,可以将CO2还原为CH4和少量的CH3OH。在CO2加氢制CH4的情况下,Cu4O团簇和Cu4S团簇的反应势垒与原始Cu-4团簇相比分别降低了0.37 eV和0.15 eV。计算结果还表明,CO2加氢生成CH4的过电位为Cu4S

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