Litcius/Paper detail

Enhancing CO<sub>2</sub> Electroreduction Selectivity toward Multicarbon Products via Tuning the Local H<sub>2</sub>O/CO<sub>2</sub> Molar Ratio

Xiangdong Kong, Cheng Wang, Zifan Xu, Yongzhi Zhong, Yan Liu, Lang Qin, Jie Zeng, Zhigang Geng

2022Nano Letters40 citationsDOI

Abstract

Mass transfer plays an important role in controlling the surface coverage of reactants and the kinetics of surface reactions, thus significantly adjusting the catalytic performance. Herein, we reported that H2O diffusion was modulated by controlling the thicknesses of the carbon black (CB) layer between the gas diffusion electrode (GDE) of Cu and the electrolyte. As a consequence, the product distribution over the GDE of Cu was effectively regulated during CO2 electroreduction. Interestingly, a volcano-type relationship between the thickness of the CB layer and the faradaic efficiency (FE) for multicarbon (C2+) products was observed over the GDE of Cu. Especially, when the applied total current density was set as 800 mA cm–2, the FE for the C2+ products over the GDE of Cu coated by a CB layer with a thickness of 6.6 μm reached 63.2%, which was 2.8 times higher than that (16.8%) over the GDE of Cu without a CB layer.

Topics & Concepts

Gas diffusion electrodeElectrolyteChemistryDiffusionSelectivityElectrodeCurrent densityAnalytical Chemistry (journal)CatalysisFaraday efficiencyLayer (electronics)Molar ratioElectrochemistryPhysical chemistryThermodynamicsChromatographyOrganic chemistryPhysicsQuantum mechanicsCO2 Reduction Techniques and CatalystsIonic liquids properties and applicationsElectrochemical Analysis and Applications