A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity

Structural change at multiferroic phase boundary is anticipated to have an associated large magnetoelectric response, which yet awaits to be evidenced. Here, Fernández-Posada et al. report electric field-induced phase change for a BiFeO3–BiMnO3–PbTiO3solid solution with distinctive magnetic signatur...

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Main Authors: Carmen M. Fernández-Posada, Alicia Castro, Jean-Michel Kiat, Florence Porcher, Octavio Peña, Miguel Algueró, Harvey Amorín
Format: Article
Language:English
Published: Nature Portfolio 2016-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms12772
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author Carmen M. Fernández-Posada
Alicia Castro
Jean-Michel Kiat
Florence Porcher
Octavio Peña
Miguel Algueró
Harvey Amorín
author_facet Carmen M. Fernández-Posada
Alicia Castro
Jean-Michel Kiat
Florence Porcher
Octavio Peña
Miguel Algueró
Harvey Amorín
author_sort Carmen M. Fernández-Posada
collection DOAJ
description Structural change at multiferroic phase boundary is anticipated to have an associated large magnetoelectric response, which yet awaits to be evidenced. Here, Fernández-Posada et al. report electric field-induced phase change for a BiFeO3–BiMnO3–PbTiO3solid solution with distinctive magnetic signature.
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spelling doaj.art-30c6f7a7dcde49ddaa875409f98278662022-12-21T23:00:45ZengNature PortfolioNature Communications2041-17232016-09-01711910.1038/ncomms12772A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricityCarmen M. Fernández-Posada0Alicia Castro1Jean-Michel Kiat2Florence Porcher3Octavio Peña4Miguel Algueró5Harvey Amorín6Instituto de Ciencia de Materiales de MadridInstituto de Ciencia de Materiales de MadridLaboratoire Structures, Propriétés et Modélisation des Solides, Associé au CNRS (UMR8580)Laboratoire Léon Brillouin, UMR 12 CEA-CNRSInstitut des Sciences Chimiques de Rennes, Associé au CNRS (UMR 6226)Instituto de Ciencia de Materiales de MadridInstituto de Ciencia de Materiales de MadridStructural change at multiferroic phase boundary is anticipated to have an associated large magnetoelectric response, which yet awaits to be evidenced. Here, Fernández-Posada et al. report electric field-induced phase change for a BiFeO3–BiMnO3–PbTiO3solid solution with distinctive magnetic signature.https://doi.org/10.1038/ncomms12772
spellingShingle Carmen M. Fernández-Posada
Alicia Castro
Jean-Michel Kiat
Florence Porcher
Octavio Peña
Miguel Algueró
Harvey Amorín
A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
Nature Communications
title A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
title_full A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
title_fullStr A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
title_full_unstemmed A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
title_short A novel perovskite oxide chemically designed to show multiferroic phase boundary with room-temperature magnetoelectricity
title_sort novel perovskite oxide chemically designed to show multiferroic phase boundary with room temperature magnetoelectricity
url https://doi.org/10.1038/ncomms12772
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