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用于协同电还原CO的准共价耦合镍-铜原子对

Quasi-Covalently Coupled Ni-Cu Atomic Pair for Synergistic Electroreduction of CO.

作者信息

Zhu Jianbing, Xiao Meiling, Ren Dezhang, Gao Rui, Liu Xiaozhi, Zhang Zhen, Luo Dan, Xing Wei, Su Dong, Yu Aiping, Chen Zhongwei

机构信息

Department of Chemical Engineering, Waterloo Institute for Nanotechnology, Waterloo Institute for Sustainable Energy, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Am Chem Soc. 2022 Jun 8;144(22):9661-9671. doi: 10.1021/jacs.2c00937. Epub 2022 May 27.

Abstract

Developing highly active, selective, and stable electrocatalysts for the carbon dioxide reduction reaction (CORR) is crucial to establish a CO conversion system for industrial implementation and, therefore, to realize an artificially closed carbon loop. This can only be achieved through the rational material design based upon the knowledge of the operational active site at the molecular scale. Enlightened by theoretical screening, herein, we for the first time manipulate a novel Ni-Cu atomic pair configuration toward improved CORR performance. Systematic characterizations and theoretical modeling reveal that the secondary Cu metal incorporation positively shifts the Ni 3d orbital energy to the Fermi level and thus accelerates the rate-determining step, *COOH formation. In addition, the intrinsic inactivity of Cu toward the competing hydrogen evolution reaction causes a considerable reaction barrier for water dissociation on the Ni-Cu moiety. Due to these attributes, the as-developed Ni/Cu-N-C catalyst exhibits excellent catalytic activity and selectivity, with a record-high turnover frequency of 20,695 h at -0.6 V (vs RHE) and a maximum Faradaic efficiency of 97.7% for CO production. Furthermore, the dynamic structure evolution monitored by operando X-ray absorption fine-structure spectroscopy unveils the interaction between the Ni center and CO molecules and the synergistic effect of the Ni-Cu atomic pair on CORR activity.

摘要

开发用于二氧化碳还原反应(CORR)的高活性、高选择性和稳定的电催化剂对于建立用于工业应用的CO转化系统至关重要,因此对于实现人工封闭碳循环也至关重要。这只能通过基于分子尺度上的活性位点知识进行合理的材料设计来实现。受理论筛选的启发,在此,我们首次操控一种新型的Ni-Cu原子对构型以提高CORR性能。系统的表征和理论建模表明,引入的第二金属Cu使Ni 3d轨道能量正向移动至费米能级,从而加速了速率决定步骤——*COOH的形成。此外,Cu对竞争性析氢反应的固有惰性导致Ni-Cu部分上水离解的反应势垒相当大。由于这些特性,所开发的Ni/Cu-N-C催化剂表现出优异的催化活性和选择性,在-0.6 V(相对于可逆氢电极)下具有创纪录的20,695 h-1的周转频率以及97.7%的CO生成最大法拉第效率。此外,通过原位X射线吸收精细结构光谱监测的动态结构演变揭示了Ni中心与CO分子之间的相互作用以及Ni-Cu原子对在CORR活性上的协同效应。

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