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Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity

The high-pressure synthesis and incommensurately modulated structure are reported for the new compound Sr(2)Pt(8−x)As, with x = 0.715 (5). The structure consists of Sr(2)Pt(3)As layers alternating with Pt-only corrugated grids. Ab initio calculations predict a metallic character with a dominant role...

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Autores principales: Martino, Edoardo, Arakcheeva, Alla, Autès, Gabriel, Pisoni, Andrea, Bachmann, Maja D., Modic, Kimberly A., Helm, Toni, Yazyev, Oleg V., Moll, Philip J. W., Forró, László, Katrych, Sergiy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038961/
https://www.ncbi.nlm.nih.gov/pubmed/30002847
http://dx.doi.org/10.1107/S2052252518007303
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author Martino, Edoardo
Arakcheeva, Alla
Autès, Gabriel
Pisoni, Andrea
Bachmann, Maja D.
Modic, Kimberly A.
Helm, Toni
Yazyev, Oleg V.
Moll, Philip J. W.
Forró, László
Katrych, Sergiy
author_facet Martino, Edoardo
Arakcheeva, Alla
Autès, Gabriel
Pisoni, Andrea
Bachmann, Maja D.
Modic, Kimberly A.
Helm, Toni
Yazyev, Oleg V.
Moll, Philip J. W.
Forró, László
Katrych, Sergiy
author_sort Martino, Edoardo
collection PubMed
description The high-pressure synthesis and incommensurately modulated structure are reported for the new compound Sr(2)Pt(8−x)As, with x = 0.715 (5). The structure consists of Sr(2)Pt(3)As layers alternating with Pt-only corrugated grids. Ab initio calculations predict a metallic character with a dominant role of the Pt d electrons. The electrical resistivity (ρ) and Seebeck coefficient confirm the metallic character, but surprisingly, ρ showed a near-flat temperature dependence. This observation fits the description of the Mooij correlation for electrical resistivity in disordered metals, originally developed for statistically distributed point defects. The discussed material has a long-range crystallographic order, but the high concentration of Pt vacancies, incommensurately ordered, strongly influences the electronic conduction properties. This result extends the range of validity of the Mooij correlation to long-range ordered incommensurately modulated vacancies. Motivated by the layered structure, the resistivity anisotropy was measured in a focused-ion-beam micro-fabricated well oriented single crystal. A low resistivity anisotropy indicates that the layers are electrically coupled and conduction channels along different directions are intermixed.
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spelling pubmed-60389612018-07-12 Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity Martino, Edoardo Arakcheeva, Alla Autès, Gabriel Pisoni, Andrea Bachmann, Maja D. Modic, Kimberly A. Helm, Toni Yazyev, Oleg V. Moll, Philip J. W. Forró, László Katrych, Sergiy IUCrJ Research Papers The high-pressure synthesis and incommensurately modulated structure are reported for the new compound Sr(2)Pt(8−x)As, with x = 0.715 (5). The structure consists of Sr(2)Pt(3)As layers alternating with Pt-only corrugated grids. Ab initio calculations predict a metallic character with a dominant role of the Pt d electrons. The electrical resistivity (ρ) and Seebeck coefficient confirm the metallic character, but surprisingly, ρ showed a near-flat temperature dependence. This observation fits the description of the Mooij correlation for electrical resistivity in disordered metals, originally developed for statistically distributed point defects. The discussed material has a long-range crystallographic order, but the high concentration of Pt vacancies, incommensurately ordered, strongly influences the electronic conduction properties. This result extends the range of validity of the Mooij correlation to long-range ordered incommensurately modulated vacancies. Motivated by the layered structure, the resistivity anisotropy was measured in a focused-ion-beam micro-fabricated well oriented single crystal. A low resistivity anisotropy indicates that the layers are electrically coupled and conduction channels along different directions are intermixed. International Union of Crystallography 2018-06-08 /pmc/articles/PMC6038961/ /pubmed/30002847 http://dx.doi.org/10.1107/S2052252518007303 Text en © Edoardo Martino et al. 2018 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Research Papers
Martino, Edoardo
Arakcheeva, Alla
Autès, Gabriel
Pisoni, Andrea
Bachmann, Maja D.
Modic, Kimberly A.
Helm, Toni
Yazyev, Oleg V.
Moll, Philip J. W.
Forró, László
Katrych, Sergiy
Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title_full Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title_fullStr Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title_full_unstemmed Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title_short Sr(2)Pt(8−x)As: a layered incommensurately modulated metal with saturated resistivity
title_sort sr(2)pt(8−x)as: a layered incommensurately modulated metal with saturated resistivity
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038961/
https://www.ncbi.nlm.nih.gov/pubmed/30002847
http://dx.doi.org/10.1107/S2052252518007303
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