阴极
电解
电流密度
化学
电化学
法拉第效率
无机化学
联轴节(管道)
电流(流体)
化学工程
电解水
电催化剂
离子运输机
电极
催化作用
析氧
氢
二氧化碳电化学还原
Nafion公司
二氧化碳
工作(物理)
可逆氢电极
交换电流密度
材料科学
制氢
质子输运
氧化还原
纳米技术
作者
Yue Yang,Yanyang Qin,Yunhao Zhong,Xiangzhou Lv,Zhenjie Li,Qian Liu,Angjian Wu,Yaqiong Su,Hao Bin Wu
标识
DOI:10.1002/anie.202516139
摘要
Abstract Electrochemical carbon dioxide reduction reaction (CO 2 RR) under acidic condition offers great promise to achieve carbon‐efficient CO 2 electrolysis. However, acidic CO 2 RR has been hindered by the severe competing hydrogen evolution reaction (HER) and sluggish carbon–carbon coupling efficiency. Herein, an ion‐transport regulation strategy has been developed to customize the microenvironment near cathode surface during high current density electrolysis in acidic electrolyte. A hybrid adlayer composed of (010) planes‐enclosed ZrO 2 nanosheets and Nafion preferentially allows K + transport toward cathode through proton trapping and Donnan effect, thus simultaneously enriching K + and raising pH near cathode surface during CO 2 RR. Such K + ‐rich and alkaline microenvironment suppresses HER and favors C 2+ products formation. Particularly, a remarkable C 2+ Faraday efficiency (FE) of nearly 81% has been achieved with a partial current density of 484 mA cm −2 for C 2+ products on modified Cu electrode. This work demonstrates an effective strategy to boost the CO 2 RR performance in acidic electrolyzers for efficient and sustainable CO 2 conversion.
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