JOURNAL ARTICLE

Electrochemical Reduction of Carbon Dioxide to Formic Acid

Abstract

Abstract This Review provides an overview of electrochemical techniques that are implemented in addressing gaseous CO 2 towards the synthesis of a particular fuel (i.e. formic acid). The electrochemical reaction mechanism, as well as the advancement of electrodes, catalyst materials, and reactor designs are reviewed and discussed. To date, the electrolytic cell is the dominant reaction site and, based on which, various catalysts have been proposed and researched. In addition, relevant work regarding reactor design optimization for the purpose of alleviating restrictions of the current CO 2 electrochemical reduction system are summarized, including low reactant‐transfer rate, high reaction overpotential, and low product selectivity. The use of microfluidic techniques to build microscale electrochemical reactors is identified to be highly promising to largely increase the electrochemical performance. Finally, future challenges and opportunities of electrochemical reduction of CO 2 are discussed.

Keywords:
Overpotential Electrochemical reduction of carbon dioxide Formic acid Electrochemistry Catalysis Microscale chemistry Materials science Chemical engineering Electrode Chemistry Carbon monoxide Organic chemistry

Metrics

264
Cited By
6.67
FWCI (Field Weighted Citation Impact)
148
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

CO2 Reduction Techniques and Catalysts
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Carbon dioxide utilization in catalysis
Physical Sciences →  Chemical Engineering →  Process Chemistry and Technology
Ionic liquids properties and applications
Physical Sciences →  Chemical Engineering →  Catalysis

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