材料科学
石墨烯
氧化物
电解
催化作用
化学工程
洪水(心理学)
纳米技术
无机化学
电极
冶金
有机化学
物理化学
心理学
化学
工程类
电解质
心理治疗师
作者
Yuming Wu,Mohamed Nazmi Idros,Desheng Feng,Wengang Huang,Thomas Burdyny,Bo Wang,Geoff Wang,Mengran Li,Thomas E. Rufford
标识
DOI:10.1021/acsami.4c09095
摘要
Electrolyte flooding in porous catalyst layers on gas diffusion electrodes (GDE) limits the stability and high-current performance of CO 2 and CO electrolyzers. Here, we demonstrate the in situ electroreduction of graphene oxide (GO) to reduced graphene oxide (r-GO) within a silver catalyst layer on a carbon GDE. The r-GO introduces hydrophobicity regions in the catalyst layer that help mitigate electrolyte flooding during high current density CO 2 electrolysis to CO. The flooding-resistant r-GO/Ag-coated GDE achieves a sustained Faradaic efficiency of CO at 94% for more than 8 h, compared to a rapid drop from 95% to 66% in an Ag-coated GDE without r-GO at 100 mA·cm –2 . We found that GO enhances the electrochemically active surface area of the catalyst layer during CO 2 electrolysis tests because the incorporation of GO increases the roughness of the catalyst layer. The in situ method of electrochemically reducing GO to r-GO provides a low-cost, practical approach that can be applied during standard spray-deposition procedures to develop flooding-resistant GDEs.
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