CO2 electrolysis to multicarbon products in strong acid

Jianan Erick Huang, Fengwang Li*, Adnan Ozden, Armin Sedighian Rasouli, F. Pelayo García de Arquer, Shijie Liu, Shuzhen Zhang, Mingchuan Luo, Xue Wang, Yanwei Lum, Yi Xu, Koen Bertens, Rui Kai Miao, Cao Thang Dinh, David Sinton, Edward H. Sargent

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

827 Scopus citations

Abstract

Carbon dioxide electroreduction (CO2R) is being actively studied as a promising route to convert carbon emissions to valuable chemicals and fuels. However, the fraction of input CO2 that is productively reduced has typically been very low, <2% for multicarbon products; the balance reacts with hydroxide to form carbonate in both alkaline and neutral reactors. Acidic electrolytes would overcome this limitation, but hydrogen evolution has hitherto dominated under those conditions. We report that concentrating potassium cations in the vicinity of electrochemically active sites accelerates CO2 activation to enable efficient CO2R in acid. We achieve CO2R on copper at pH <1 with a single-pass CO2 utilization of 77%, including a conversion efficiency of 50% toward multicarbon products (ethylene, ethanol, and 1-propanol) at a current density of 1.2 amperes per square centimeter and a full-cell voltage of 4.2 volts.

Original languageEnglish (US)
Pages (from-to)1074-1078
Number of pages5
JournalScience
Volume372
Issue number6546
DOIs
StatePublished - Jun 4 2021

ASJC Scopus subject areas

  • General

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