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Published in: Topics in Catalysis 5-7/2016

11-02-2016 | Original Paper

Near-Ambient Pressure XPS of High-Temperature Surface Chemistry in Sr2Co2O5 Thin Films

Authors: Wesley T. Hong, Kelsey A. Stoerzinger, Ethan J. Crumlin, Eva Mutoro, Hyoungjeen Jeen, Ho Nyung Lee, Yang Shao-Horn

Published in: Topics in Catalysis | Issue 5-7/2016

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Abstract

Transition metal perovskite oxides are promising electrocatalysts for the oxygen reduction reaction (ORR) in fuel cells, but a lack of fundamental understanding of oxide surfaces impedes the rational design of novel catalysts with improved device efficiencies. In particular, understanding the surface chemistry of oxides is essential for controlling both catalytic activity and long-term stability. Thus, elucidating the physical nature of species on perovskite surfaces and their catalytic enhancement would generate new insights in developing oxide electrocatalysts. In this article, we perform near-ambient pressure XPS of model brownmillerite Sr2Co2O5 (SCO) epitaxial thin films with different crystallographic orientations. Detailed analysis of the Co 2p spectra suggests that the films lose oxygen as a function of temperature. Moreover, deconvolution of the O 1s spectra shows distinct behavior for (114)-oriented SCO films compared to (001)-oriented SCO films, where an additional bulk oxygen species is observed. These findings indicate a change to a perovskite-like oxygen chemistry that occurs more easily in (114) SCO than (001) SCO, likely due to the orientation of oxygen vacancy channels out-of-plane with respect to the film surface. This difference in surface chemistry is responsible for the anisotropy of the oxygen surface exchange coefficient of SCO and may contribute to the enhanced ORR kinetics of La0.8Sr0.2CoO3−δ thin films by SCO surface particles observed previously.

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Appendix
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Metadata
Title
Near-Ambient Pressure XPS of High-Temperature Surface Chemistry in Sr2Co2O5 Thin Films
Authors
Wesley T. Hong
Kelsey A. Stoerzinger
Ethan J. Crumlin
Eva Mutoro
Hyoungjeen Jeen
Ho Nyung Lee
Yang Shao-Horn
Publication date
11-02-2016
Publisher
Springer US
Published in
Topics in Catalysis / Issue 5-7/2016
Print ISSN: 1022-5528
Electronic ISSN: 1572-9028
DOI
https://doi.org/10.1007/s11244-015-0532-4

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