(646c) Co-Adsorbed Surface Hydroxide and CO Promote CO2 Electrolysis to Ethylene in Acidic Conditions | AIChE

(646c) Co-Adsorbed Surface Hydroxide and CO Promote CO2 Electrolysis to Ethylene in Acidic Conditions

Authors 

Chen, Z. - Presenter, University of New Mexico
Cao, Y., University of Toronto
Sinton, D., University of Toronto
Ge, J., Tsinghua University
Sargent, E., University of Toronto
Performing CO2 reduction (CO2R) in acidic conditions can enable high single-pass CO2 conversion. However, hydrogen evolution reaction (HER) prevails in acidic conditions and limits the CO2R selectivity for multi-carbon (C2+) products. Herein, we present an electrodeposited copper (EC-Cu) catalyst that suppresses HER and promotes selective CO2R to C2+ products in acidic conditions. Combining in situ spectroscopy, DFT calculations, and catalyst performance, we show that co-adsorbed CO and OH on the catalyst surface promote C-C coupling, which we correlate with evidence of increased CO residence time. With optimization, the EC-Cu catalyst achieved a 60% faradaic efficiency for C2H4 and 90% for C2+. Using a slim flow cell, we obtained a 20% energy efficiency toward ethylene production using the EC-Cu catalyst.