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Dopamine-Carbonized Coating PtCo Catalyst with Enhanced Durability toward the Oxygen Reduction Reaction.

Authors :
Wang R
Du Y
Yan Y
Yan S
Zou Z
Source :
The journal of physical chemistry letters [J Phys Chem Lett] 2024 Aug 22; Vol. 15 (33), pp. 8459-8466. Date of Electronic Publication: 2024 Aug 09.
Publication Year :
2024

Abstract

Stability is the main challenge for the application of PtCo catalysts because Co tends to leach during the electrochemical reaction. Herein, we immerse and adsorb dopamine to densely coat Pt <subscript>0.8</subscript> Co <subscript>0.2</subscript> particles and subsequently thermally carbonize the coating into few-layer nitrogen-doped graphene to produce Pt <subscript>0.8</subscript> Co <subscript>0.2</subscript> @NC. This coating effectively hinders direct contact between Pt <subscript>0.8</subscript> Co <subscript>0.2</subscript> particles and the electrolyte, thereby enhancing the stability of the catalyst by preventing Ostwald ripening and suppressing competitive adsorption of toxic species, while also bolstering its antipoisoning ability. Experimental results indicate that the thin coating does not compromise the oxygen reduction reaction activity of the catalyst, showcasing a half-wave potential of 0.81 V in alkaline electrolytes. Spectroscopic results suggest that a strong bonding interaction between Pt and the pyridinic N of N-doped graphene contributes to the generation of a dense coating. The coating layer does not affect the four-electron reaction mechanism of the Pt <subscript>0.8</subscript> Co <subscript>0.2</subscript> alloy, and the coordinatively unsaturated carbon atoms on Pt <subscript>0.8</subscript> Co <subscript>0.2</subscript> @NC serve as active oxygen reduction reaction centers.

Details

Language :
English
ISSN :
1948-7185
Volume :
15
Issue :
33
Database :
MEDLINE
Journal :
The journal of physical chemistry letters
Publication Type :
Academic Journal
Accession number :
39121509
Full Text :
https://doi.org/10.1021/acs.jpclett.4c01927