The Promotional Effect of Rare Earth on Pt for Ethanol Electro-Oxidation and Its Application on DEFC

Bimetallic Pt<sub>3</sub>Eu/C, Pt<sub>3</sub>La/C, and Pt<sub>3</sub>Ce/C electrocatalysts have been prepared, characterized, and tested for ethanol electro-oxidation (EEO). The materials were synthesized by chemical reduction with NaBH<sub>4</sub>, re...

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Bibliographic Details
Main Authors: Alécio Rodrigues Nunes, José J. Linares, Rudy Crisafulli, Sabrina C. Zignani, Flávio Colmati
Format: Article
Language:English
Published: MDPI AG 2023-06-01
Series:Catalysts
Subjects:
Online Access:https://www.mdpi.com/2073-4344/13/6/1011
Description
Summary:Bimetallic Pt<sub>3</sub>Eu/C, Pt<sub>3</sub>La/C, and Pt<sub>3</sub>Ce/C electrocatalysts have been prepared, characterized, and tested for ethanol electro-oxidation (EEO). The materials were synthesized by chemical reduction with NaBH<sub>4</sub>, rendering nanosized particles with actual compositions close to the nominals and no alloy formation. X-ray photoelectron spectroscopy (XPS) confirmed that the auxiliary rare-earth metals were present on the surface in oxide form. The electrochemical analyses in acid and alkaline EEO evidenced that, compared to Pt/C, the addition of rare earth metals in the form of oxides reduced the onset potential, increased the current density, and enhanced the stability. The results were fully confirmed in the DEFC single-cell measurements. Finally, the presence of rare earth metals in the oxidized form increased the percentage of acetic acid as the final product, making the electrocatalysts more selective and efficient than Pt/C, where acetaldehyde was the main product.
ISSN:2073-4344