Issue 30, 2023

Fundamental insight into enhanced activity of Pd/CeO2 thin films in hydrogen oxidation reaction in alkaline media

Abstract

Palladium supported on ceria (Pd/CeO2) has recently raised strong interest as an alternative catalyst to platinum on the anode electrode in anion exchange membrane fuel cells. Herein, we provide new insight into the enhanced activity of Pd/CeO2 in hydrogen oxidation reaction (HOR) in alkaline media. Using well-defined model thin films, we show that Pd/CeO2 thin films lead to enhanced activity in HOR compared to pure Pd thin films. In situ characterization using electrochemical quartz crystal microbalance provide in-depth understanding of the role of CeO2. CeO2 leads to fundamental differences in adsorption and absorption of key reaction intermediates during HOR. In combination with characterization and theoretical calculations, Pd atoms embedded in CeO2 are shown to be present on the prepared thin films and active for hydrogen activation but are not able to bind CO during CO-stripping characterization. Finally, an estimation of the source of hydroxyl intermediates provided by CeO2 – which could be directly participating in the reaction – is presented herein. Fundamental understanding of the Pd–CeO2 interface in HOR opens new ways to reduce the amount of noble metals in alkaline fuel cells.

Graphical abstract: Fundamental insight into enhanced activity of Pd/CeO2 thin films in hydrogen oxidation reaction in alkaline media

Supplementary files

Article information

Article type
Paper
Submitted
30 Mac 2023
Accepted
13 Jul 2023
First published
19 Jul 2023
This article is Open Access
Creative Commons BY license

J. Mater. Chem. A, 2023,11, 16370-16382

Fundamental insight into enhanced activity of Pd/CeO2 thin films in hydrogen oxidation reaction in alkaline media

M. Luneau, L. Strandberg, G. Montserrat-Sisó, V. Shokhen, R. Mohan, H. Grönbeck and B. Wickman, J. Mater. Chem. A, 2023, 11, 16370 DOI: 10.1039/D3TA01879B

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