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Elucidation of the oxygen reduction volcano in alkaline media using a copper–platinum(111) alloy

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Title: Elucidation of the oxygen reduction volcano in alkaline media using a copper–platinum(111) alloy
Authors: Jensen, KD
Tymoczko, J
Rossmeisl, J
Bandarenka, A
Chorkendorff, I
Escudero-Escribano, M
Stephens, IEL
Item Type: Journal Article
Abstract: The relationship between the binding of the reaction intermediates and oxygen reduction activity in alkaline media was experimentally explored. By introducing Cu into the 2nd surface layer of a Pt(111) single crystal, the surface reactivity was tuned. In both 0.1 m NaOH and 0.1 m KOH, the optimal catalyst should exhibit OH binding circa 0.1 eV weaker than Pt(111), via a Sabatier volcano; this observation suggests that the reaction is mediated via the same surface bound intermediates as in acid, in contrast to previous reports. In 0.1 m KOH, the alloy catalyst at the peak of the volcano exhibits a maximum activity of 101±8 mA cm−2 at 0.9 V vs. a reversible hydrogen electrode (RHE). This activity constitutes a circa 60‐fold increase over Pt(111) in 0.1 m HClO4.
Issue Date: 1-Mar-2018
Date of Acceptance: 18-Jan-2018
URI: http://hdl.handle.net/10044/1/58428
DOI: 10.1002/anie.201711858
ISSN: 1433-7851
Publisher: Wiley
Start Page: 2800
End Page: 2805
Journal / Book Title: Angewandte Chemie International Edition
Volume: 57
Issue: 11
Copyright Statement: © 2018 Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim. This is the accepted version of the following article: [full citation], which has been published in final form at https://onlinelibrary.wiley.com/doi/abs/10.1002/anie.201711858
Keywords: Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
electrocatalysis
oxygen reduction
platinum
Sabatier principle
surface chemistry
STEPPED PLATINUM SURFACES
ELECTROLYTE FUEL-CELLS
NONCOVALENT INTERACTIONS
OXIDE CATALYSTS
ACIDIC MEDIA
WATER
ELECTROCATALYSIS
ADSORPTION
BATTERIES
EVOLUTION
Sabatier principle
electrocatalysis
oxygen reduction
platinum
surface chemistry
03 Chemical Sciences
Organic Chemistry
Publication Status: Published
Online Publication Date: 2018-01-18
Appears in Collections:Materials
Faculty of Engineering