Loading…

Effects of Ag Nanoparticle Coated Metal Electrodes on Electrochemical CO2 Reduction in Aqueous KHCO3

Electrochemical CO2 reduction is crucial for developing a sustainable closed-carbon-cycle society; however, the factors determining product selectivity have not been fully established, especially when the reaction is carried out over metal cathodes. The selectivity of the CO2 reduction pathway can b...

Full description

Saved in:
Bibliographic Details
Published in:Denki kagaku oyobi kōgyō butsuri kagaku 2022/03/25, Vol.90(3), pp.037009-037009
Main Authors: KOIKE, Kayo, NARA, Miyuki, FUKUSHIMA, Minori, BAE, Hyojung, HA, Jun-Seok, FUJII, Katsushi, WADA, Satoshi
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Electrochemical CO2 reduction is crucial for developing a sustainable closed-carbon-cycle society; however, the factors determining product selectivity have not been fully established, especially when the reaction is carried out over metal cathodes. The selectivity of the CO2 reduction pathway can be improved by modifying the cathode’s catalyst surface. This can be achieved by using specific surface of single crystal or by alloying through the addition of an impurity. In this study, the products of electrochemical CO2 reduction were evaluated in an aqueous KHCO3 system at various applied currents and with various metal cathodes. The metal cathodes were coated by Ag nanoparticles, as the Ag cathode was determined to yield the best Faradaic efficiency for CO production in an aqueous KHCO3 system. Our results suggest that some Ag coated cathodes enhance CO2 reduction, and thus the reduction products are tunable through surface modification.
ISSN:1344-3542
2186-2451
DOI:10.5796/electrochemistry.21-00133