Crystal(编程语言)
密度泛函理论
甲烷
化学
材料科学
乙烯
塔菲尔方程
结晶学
电化学
物理化学
计算化学
催化作用
有机化学
电极
计算机科学
程序设计语言
作者
Bangwei Deng,Ming Huang,Kanglu Li,Xiaoli Zhao,Qin Geng,Si Chen,Hongtao Xie,Xing’an Dong,Hong Wang,Fan Dong
标识
DOI:10.1002/anie.202114080
摘要
Cu2 O microparticles with controllable crystal planes and relatively high stability have been recognized as a good platform to understand the mechanism of the electrocatalytic CO2 reduction reaction (CO2 RR). Herein, we demonstrate that the in situ generated Cu2 O/Cu interface plays a key role in determining the selectivity of methane formation, rather than the initial crystal plane of the reconstructed Cu2 O microparticles. Experimental results indicate that the methane evolution is dominated on all three different crystal planes with similar Tafel slopes and long-term stabilities. Density functional theory (DFT) calculations further reveal that *CO is protonated via a similar bridge configuration at the Cu2 O/Cu interface, regardless of the initial crystal planes of Cu2 O. The Gibbs free energy changes (ΔG) of *CHO on different reconstructed Cu2 O planes are close and more negative than that of *OCCOH, indicating the methane formation is more favorable than ethylene on all Cu2 O crystal planes.
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