化学吸附
化学
催化作用
质子化
解吸
电化学
吸附
分子
电催化剂
动力学
从头算
氧化还原
反应机理
组合化学
选择性
活化能
计算化学
反应中间体
无机化学
化学动力学
分子动力学
电子转移
化学反应
反应性(心理学)
多相催化
可逆反应
作者
Yanpu Niu,Haolan Tao,Honglai Liu,Jingkun Li,Cheng Lian
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2026-02-02
卷期号:16 (4): 3903-3913
被引量:1
标识
DOI:10.1021/acscatal.5c08798
摘要
The electrocatalytic CO 2 reduction reaction (CO 2 RR) is a technology to utilize fluctuating renewable energy and close the carbon cycle. Cations play a vital role in interfacial reaction behaviors, which further affect the activity and selectivity of CO 2 RR. Current insights mainly focus on analyzing cation effects on the reaction kinetics of key intermediates, but a systematic understanding of cation effects cannot ignore the role of adsorption–desorption behaviors in the overall CO 2 RR performance. In this work, we highlight the effects of K + on the adsorption and desorption dynamics of both CO 2 and CO molecules through ab initio molecular dynamics simulations. We find K + promotes CO 2 adsorption and inhibits *CO desorption dynamically, thereby breaking the dynamic adsorption–desorption equilibrium, which benefits the *CO 2 protonation and *CO–CO coupling. The enhanced chemisorption contribution of CO 2 /CO, arising from the cation-modulated hybridization of molecular orbitals, accounts for the regulation effect on the CO 2 /CO adsorption–desorption equilibrium. Furthermore, the cation-induced chemisorption of C1 molecules is a widespread phenomenon over various catalysts, including Cu(100), Cu(211), Au(110), Cu/Au(100) single-atom alloy, and Cu–N–C single-atom catalyst. Our study offers another insight into the cation effect on the CO 2 RR and highlights the significance of cations for interfacial transport of molecules.
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