电解质
电解
催化作用
氢
化学
化学工程
电解水
氢键
无机化学
聚合物电解质膜电解
材料科学
电极
有机化学
物理化学
分子
工程类
作者
Wangxin Ge,Lei Dong,Chaochen Wang,Yihua Zhu,Zhen Liu,Hongliang Jiang,Chunzhong Li
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2024-06-27
卷期号:14 (14): 10529-10537
被引量:52
标识
DOI:10.1021/acscatal.4c02916
摘要
Acidic CO 2 electroreduction offers a promising strategy for achieving a high CO 2 utilization efficiency. However, it is highly challenging to inhibit the competing hydrogen evolution reactions (HER) due to the high concentration of protons at the electrode–electrolyte interface. The interfacial hydrogen-bond environment greatly affects proton transfer and the kinetics of hydrogen-related reactions, e.g., HER and CO 2 reduction. In this work, we demonstrate that sulfonate-based electrolyte additives, including sodium p -styrenesulfonate (SPS), sodium p -toluene sulfonate (STS), and sodium benzenesulfonate (SBS), enable reconstruction of the interfacial hydrogen-bond environment and enhance the CO 2 electrolysis performance. Mechanistic studies uncover that the strong hydrogen-bond interactions of these sulfonate-based additives with H 2 O achieve the construction of a low proton-flux interface. This leads to the suppression of proton concentration-dependent HER. The SPS-assisted acidic CO 2 electrolysis yields CO with a high selectivity of 97.8% and a high single-pass carbon efficiency of 66.3% at 250 mA cm –2 on commercial Ag catalysts in acid. This work provides a facile strategy to promote acidic CO 2 electrolysis by modulating the interfacial hydrogen-bond environment through electrolyte design.
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