离子液体
选择性
电化学
电流密度
法拉第效率
铜
离子
化学
离子键合
电极
无机化学
化学工程
材料科学
有机化学
物理化学
催化作用
工程类
物理
量子力学
作者
Xiaoqiang Li,Guo‐Yi Duan,Jun-Wu Chen,Lijun Han,Suojiang Zhang,Bao‐Hua Xu
标识
DOI:10.1016/j.apcatb.2021.120471
摘要
Ionic liquid-based electrocatalytic CO2 reduction faces the challenge of achieving high selectivity toward value-added C2+ products at high reaction rate (≥ 100 mA cm−2). Herein, novel [email protected](ionic liquid) ([email protected]) hybrids demonstrate multi-electron reduction (> 2e–) with current densities ≥ 300 mA cm−2. Remarkably, [email protected] with F– anion exhibits high C2+ faradaic efficiency of 58 % with a high partial current density of 174 mA cm−2. Further, a highest C2+ partial current density of 233 mA cm−2 was also achieved. Experimental combined theoretical investigations reveal that the “individual” ionic pairs in the outer PIL layer enrich local CO2 concentration, thereby promoting the CO2 supply. Besides, an interfacial electric field is induced by the unbonded imidazolium moieties at Cu-PIL interface, which stabilize intermediates. Anions, differing in the electron-donating number to the imidazolium moieties, influence both the enrichment of CO2 and the stabilization of intermediates, thus regulating current density and product selectivity.
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