Issue 12, 2021

A phosphate-derived bismuth catalyst with abundant grain boundaries for efficient reduction of CO2 to HCOOH

Abstract

Electroreduction of CO2 to HCOOH with high current densities and efficiencies remains a challenge. Herein, we developed a metallic Bi catalyst with abundant grain boundaries through the electrochemical transformation of BiPO4 nanorods to boost the catalytic performance of the electroreduction of CO2 to HCOOH. The phosphate-derived Bi catalyst (PD-Bi) achieved an FE of 91.9% for HCOOH at a high current density of −600.0 mA cm−2. Mechanistic study revealed that the abundant grain boundaries within PD-Bi promoted the adsorption of CO2 and stabilization of the CO2˙ intermediate, resulting in facilitated CO2 activation and thus enhanced catalytic performance.

Graphical abstract: A phosphate-derived bismuth catalyst with abundant grain boundaries for efficient reduction of CO2 to HCOOH

Supplementary files

Article information

Article type
Communication
Submitted
09 Oct 2020
Accepted
02 Dec 2020
First published
09 Dec 2020

Chem. Commun., 2021,57, 1502-1505

A phosphate-derived bismuth catalyst with abundant grain boundaries for efficient reduction of CO2 to HCOOH

Y. Xing, H. Chen, Y. Liu, Y. Sheng, J. Zeng, Z. Geng and J. Bao, Chem. Commun., 2021, 57, 1502 DOI: 10.1039/D0CC06756C

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