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Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide

[Image: see text] Complex transition-metal oxides are important functional materials in areas such as energy and information storage. The cubic ABO(3) perovskite is an archetypal example of this class, formed by the occupation of small octahedral B-sites within an AO(3) network defined by larger A c...

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Autores principales: Demont, Antoine, Sayers, Ruth, Tsiamtsouri, Maria A., Romani, Simon, Chater, Philip A., Niu, Hongjun, Martí-Gastaldo, Carlos, Xu, Zhongling, Deng, Zengqiang, Bréard, Yohann, Thomas, Michael F., Claridge, John B., Rosseinsky, Matthew J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2013
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3793895/
https://www.ncbi.nlm.nih.gov/pubmed/23750709
http://dx.doi.org/10.1021/ja403611s
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author Demont, Antoine
Sayers, Ruth
Tsiamtsouri, Maria A.
Romani, Simon
Chater, Philip A.
Niu, Hongjun
Martí-Gastaldo, Carlos
Xu, Zhongling
Deng, Zengqiang
Bréard, Yohann
Thomas, Michael F.
Claridge, John B.
Rosseinsky, Matthew J.
author_facet Demont, Antoine
Sayers, Ruth
Tsiamtsouri, Maria A.
Romani, Simon
Chater, Philip A.
Niu, Hongjun
Martí-Gastaldo, Carlos
Xu, Zhongling
Deng, Zengqiang
Bréard, Yohann
Thomas, Michael F.
Claridge, John B.
Rosseinsky, Matthew J.
author_sort Demont, Antoine
collection PubMed
description [Image: see text] Complex transition-metal oxides are important functional materials in areas such as energy and information storage. The cubic ABO(3) perovskite is an archetypal example of this class, formed by the occupation of small octahedral B-sites within an AO(3) network defined by larger A cations. We show that introduction of chemically mismatched octahedral cations into a cubic perovskite oxide parent phase modifies structure and composition beyond the unit cell length scale on the B sublattice alone. This affords an endotaxial nanocomposite of two cubic perovskite phases with distinct properties. These locally B-site cation-ordered and -disordered phases share a single AO(3) network and have enhanced stability against the formation of a competing hexagonal structure over the single-phase parent. Synergic integration of the distinct properties of these phases by the coherent interfaces of the composite produces solid oxide fuel cell cathode performance superior to that expected from the component phases in isolation.
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spelling pubmed-37938952013-10-10 Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide Demont, Antoine Sayers, Ruth Tsiamtsouri, Maria A. Romani, Simon Chater, Philip A. Niu, Hongjun Martí-Gastaldo, Carlos Xu, Zhongling Deng, Zengqiang Bréard, Yohann Thomas, Michael F. Claridge, John B. Rosseinsky, Matthew J. J Am Chem Soc [Image: see text] Complex transition-metal oxides are important functional materials in areas such as energy and information storage. The cubic ABO(3) perovskite is an archetypal example of this class, formed by the occupation of small octahedral B-sites within an AO(3) network defined by larger A cations. We show that introduction of chemically mismatched octahedral cations into a cubic perovskite oxide parent phase modifies structure and composition beyond the unit cell length scale on the B sublattice alone. This affords an endotaxial nanocomposite of two cubic perovskite phases with distinct properties. These locally B-site cation-ordered and -disordered phases share a single AO(3) network and have enhanced stability against the formation of a competing hexagonal structure over the single-phase parent. Synergic integration of the distinct properties of these phases by the coherent interfaces of the composite produces solid oxide fuel cell cathode performance superior to that expected from the component phases in isolation. American Chemical Society 2013-06-10 2013-07-10 /pmc/articles/PMC3793895/ /pubmed/23750709 http://dx.doi.org/10.1021/ja403611s Text en Copyright © 2013 American Chemical Society Terms of Use CC-BY (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html)
spellingShingle Demont, Antoine
Sayers, Ruth
Tsiamtsouri, Maria A.
Romani, Simon
Chater, Philip A.
Niu, Hongjun
Martí-Gastaldo, Carlos
Xu, Zhongling
Deng, Zengqiang
Bréard, Yohann
Thomas, Michael F.
Claridge, John B.
Rosseinsky, Matthew J.
Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title_full Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title_fullStr Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title_full_unstemmed Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title_short Single Sublattice Endotaxial Phase Separation Driven by Charge Frustration in a Complex Oxide
title_sort single sublattice endotaxial phase separation driven by charge frustration in a complex oxide
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3793895/
https://www.ncbi.nlm.nih.gov/pubmed/23750709
http://dx.doi.org/10.1021/ja403611s
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