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Journal article

Tuning the Activity of Pt(111) for Oxygen Electroreduction by Subsurface Alloying

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Surface Physics and Catalysis, Department of Physics, Technical University of Denmark1

Department of Physics, Technical University of Denmark2

Computational Atomic-scale Materials Design, Department of Physics, Technical University of Denmark3

To enable the development of low temperature fuel cells, significant improvements are required to the efficiency of the Pt electrocatalysts at the cathode, where oxygen reduction takes place. Herein, we study the effect of subsurface solute metals on the reactivity of Pt, using a Cu/Pt(111) near-surface alloy.

Our investigations incorporate electrochemical measurements, ultrahigh vacuum experiments, and density functional theory. Changes to the OH binding energy, ΔEOH, were monitored in situ and adjusted continuously through the subsurface Cu coverage. The incorporation of submonolayer quantities of Cu into Pt(111) resulted in an 8-fold improvement in oxygen reduction activity.

The most optimal catalyst for oxygen reduction has an ΔEOH ≈ 0.1 eV weaker than that of pure Pt, validating earlier theoretical predictions.

Language: English
Year: 2011
Pages: 5485-5491
ISSN: 15205126 and 00027863
Types: Journal article
DOI: 10.1021/ja111690g
ORCIDs: Stephens, Ifan , Knudsen, Brian Peter and Chorkendorff, Ib

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