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Theoretical investigation on graphene-supported single-atom catalysts for electrochemical CO2 reduction

机译:理论研究上graphene-supported单原子的催化剂的电化学二氧化碳减少

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摘要

With the advantages of maximum metal utilization, single-atom catalysts (SACs) are emerging as promising catalysts in the CO2 reduction reaction (CO2RR) field. Herein, first-principles calculation is performed to investigate the CO2-to-CO conversion mechanism by a serial of transition metal single transition metal atom supported on graphene systems (TM@Gr(s)) as a CO2 reduction catalyst. Among all SACs considered in this work, Cr@Gr(s) exhibits a low limiting potential of -0.21 V, showing remarkable performance for CO2RR. To understand activity origin of CO2RR, we analyzed the effect of d-band centers of TM@Gr(s) and investigated the charge transfer and bonding/antibonding states between the intermediates and TM atoms. These physical quantities provide a good explanation for the process of CO2RR and show the theoretical guidance for proper catalyst discovery and better carbon circulation.
机译:最大的优势金属利用率,单原子催化剂(囊)是新兴的有前途的二氧化碳还原反应的催化剂(CO2RR)领域。计算进行探讨通过一个串行CO2-to-CO转换机制过渡金属单一过渡金属原子支持石墨烯系统(TM@Gr (s))作为二氧化碳减少催化剂。这项工作,Cr@Gr (s)展品低限制-0.21 V的潜力,显示非凡的CO2RR的性能。CO2RR起源,我们分析了d带的影响中心TM@Gr (s)和调查转移和成键/反键之间的状态中间体和TM原子。量提供很好的解释CO2RR和展示的过程的理论指导正确的发现和更好的催化剂碳循环。

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