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Selective Electrochemical Conversion of CO into Methane on Ag-Decorated Copper Microsphere

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Journal ChemistryOpen
Specialty Chemistry
Date 2024 Oct 24
PMID 39446654
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Abstract

We synthesized the silver-decorated copper microsphere via the hydrothermal method followed by photoreduction of silver ions. Sub 100 nm Ag nanoparticles anchored on the surface of Cu microspheres enhance the electrochemical performance and the selectivity of the CO reduction into CH. Incorporating Ag nanoparticles onto Cu lowers the charge transfer resistance, enhancing the catalyst's conductivity and active site and increasing the rate of CO reduction. The faradaic efficiency of silver nanoparticles decorated copper microsphere for methane was 70.94 %, almost twice that of a copper microsphere (44 %). The electrochemical performance showed higher catalytic properties, stability, and faradaic efficiency of silver-decorated copper microspheres.

Citing Articles

Selective Electrochemical Conversion of CO into Methane on Ag-Decorated Copper Microsphere.

Dahal R, Srivastava R, Prasad Bastakoti B ChemistryOpen. 2024; 14(1):e202400173.

PMID: 39446654 PMC: 11726645. DOI: 10.1002/open.202400173.

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Dahal R, Srivastava R, Prasad Bastakoti B . Selective Electrochemical Conversion of CO into Methane on Ag-Decorated Copper Microsphere. ChemistryOpen. 2024; 14(1):e202400173. PMC: 11726645. DOI: 10.1002/open.202400173. View

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