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Bismuth Metal Porphyrin Framework Doped RuO2Derived Bi2O3-RuO2@C Composites for Highly Selective CO2Electroreduction

Authors :
Yang, Mingran
Xu, Yingchen
Pang, Zhengcha
Yang, Chenghan
Huang, Jinqiang
Zhu, Min
Zhang, Yiwei
Source :
Journal of the Electrochemical Society; September 2024, Vol. 171 Issue: 9 p096503-096503, 1p
Publication Year :
2024

Abstract

In electrochemical reduction of carbon dioxide (CO2RR), the design of electrocatalysts with high efficiency and selectivity is very important and challenging. In this paper, a ternary composite consisting of ruthenium dioxide and bismuth metal porphyrin-based organic framework (Bi-TCPP MOF)-derived bismuth trioxide and C skeleton has been proposed (denoted as Bi2O3-RuO2@C). Nanoscale RuO2and Bi2O3particles are uniformly distributed on the C skeleton. The precursor bismuth metal porphyrin-based organic framework restricts the localized growth of Bi2O3in the framework, while the unique, highly-conjugated system anchors the doped RuO2particles, resulting in a uniform distribution of both active sites and hole-enrichment centers. Meanwhile, the Bi-TCPP MOF-derived carbon skeleton has good electrical conductivity, and the macroporous structure also facilitates the gas transport, which leads to the synthesis of Bi2O3-RuO2@C as an electrocatalyst for CO2RR and exhibits excellent catalytic performance and high selectivity for electrocatalytic carbon dioxide reduction to methane (CO2-CH4). The peak Faraday efficiency of Bi2O3-RuO2@C for catalyzing the reduction of CO2-CH4can reach 66.95% when the doped RuO2content is 20%. Importantly, this work opens up new horizons for metal ratio regulation in constructing efficient catalytic systems derived from MOFs.

Details

Language :
English
ISSN :
00134651 and 19457111
Volume :
171
Issue :
9
Database :
Supplemental Index
Journal :
Journal of the Electrochemical Society
Publication Type :
Periodical
Accession number :
ejs67368215
Full Text :
https://doi.org/10.1149/1945-7111/ad7532