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Spin State Control of the Perovskite Rh/Co Oxides

We show why and how the spin state of transition-metal ions affects the thermoelectric properties of transition-metal oxides by investigating two perovskite-related oxides. In the A-site ordered cobalt oxide Sr [Formula: see text] YCo [Formula: see text] O [Formula: see text] , partial substitution...

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Autores principales: Terasaki, Ichiro, Shibasaki, Soichiro, Yoshida, Shin, Kobayashi, Wataru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513508/
http://dx.doi.org/10.3390/ma3020786
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author Terasaki, Ichiro
Shibasaki, Soichiro
Yoshida, Shin
Kobayashi, Wataru
author_facet Terasaki, Ichiro
Shibasaki, Soichiro
Yoshida, Shin
Kobayashi, Wataru
author_sort Terasaki, Ichiro
collection PubMed
description We show why and how the spin state of transition-metal ions affects the thermoelectric properties of transition-metal oxides by investigating two perovskite-related oxides. In the A-site ordered cobalt oxide Sr [Formula: see text] YCo [Formula: see text] O [Formula: see text] , partial substitution of Ca for Sr acts as chemical pressure, which compresses the unit cell volume to drive the spin state crossover, and concomitantly changes the magnetization and thermopower. In the perovskite rhodium oxide LaRhO [Formula: see text] , partial substitution of Sr for La acts as hole-doping, and the resistivity and thermopower decrease systematically with the Sr concentration. The thermopower remains large values at high temperatures (>150 μV/K at 800 K), which makes a remarkable contrast to La [Formula: see text] Sr [Formula: see text] CoO [Formula: see text]. We associate this with the stability of the low spin state of the Rh [Formula: see text] ions.
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spelling pubmed-55135082017-07-28 Spin State Control of the Perovskite Rh/Co Oxides Terasaki, Ichiro Shibasaki, Soichiro Yoshida, Shin Kobayashi, Wataru Materials (Basel) Article We show why and how the spin state of transition-metal ions affects the thermoelectric properties of transition-metal oxides by investigating two perovskite-related oxides. In the A-site ordered cobalt oxide Sr [Formula: see text] YCo [Formula: see text] O [Formula: see text] , partial substitution of Ca for Sr acts as chemical pressure, which compresses the unit cell volume to drive the spin state crossover, and concomitantly changes the magnetization and thermopower. In the perovskite rhodium oxide LaRhO [Formula: see text] , partial substitution of Sr for La acts as hole-doping, and the resistivity and thermopower decrease systematically with the Sr concentration. The thermopower remains large values at high temperatures (>150 μV/K at 800 K), which makes a remarkable contrast to La [Formula: see text] Sr [Formula: see text] CoO [Formula: see text]. We associate this with the stability of the low spin state of the Rh [Formula: see text] ions. Molecular Diversity Preservation International 2010-01-27 /pmc/articles/PMC5513508/ http://dx.doi.org/10.3390/ma3020786 Text en © 2010 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license http://creativecommons.org/licenses/by/3.0/.
spellingShingle Article
Terasaki, Ichiro
Shibasaki, Soichiro
Yoshida, Shin
Kobayashi, Wataru
Spin State Control of the Perovskite Rh/Co Oxides
title Spin State Control of the Perovskite Rh/Co Oxides
title_full Spin State Control of the Perovskite Rh/Co Oxides
title_fullStr Spin State Control of the Perovskite Rh/Co Oxides
title_full_unstemmed Spin State Control of the Perovskite Rh/Co Oxides
title_short Spin State Control of the Perovskite Rh/Co Oxides
title_sort spin state control of the perovskite rh/co oxides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5513508/
http://dx.doi.org/10.3390/ma3020786
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