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dc.contributor.authorRibeiro, Renan
dc.contributor.authorLongo, Elson
dc.contributor.authorAndres, Juan
dc.contributor.authorde Lazaro, Sergio Ricardo
dc.date.accessioned2018-11-30T13:08:06Z
dc.date.available2018-11-30T13:08:06Z
dc.date.issued2018
dc.identifier.citationPhys. Chem. Chem. Phys., 2018, 20, 28382ca_CA
dc.identifier.issn1463-9076
dc.identifier.issn1463-9084
dc.identifier.urihttp://hdl.handle.net/10234/177824
dc.description.abstractIn order to achieve deep insight into the multiferroic behavior and electronic properties of intrinsic oxygen vacancies in ATiO3 (A = Mn, Fe, Ni), first-principles calculations based on hybrid density functional theory were carried out for bulk and non-polar (110) surface models. We found that the formation of an oxygen vacancy is accompanied by structural and electronic disorders in the constituent clusters of [TiO6] and [AO6] in ATiO3, that become [TiO5] and [AO5], respectively. This perturbation contributes to the generation of intermediary energy levels in the band gap region, thus narrowing the required excitation energy. In addition, the remaining electrons are mainly trapped in the empty 3d orbitals of the Ti cations neighboring the oxygen vacancy, generating [TiO5] 0 (3d1 ) that mediates an antiferromagnetic to ferromagnetic transition in MnTiO3 and FeTiO3 materials. In particular, MnTiO3 surfaces show exposed [TiO4] 0 species that are responsible for its half-metallic behavior. The present work provides compelling evidence that controlling oxygen vacancies can be a valuable strategy to tailor the multiferroic properties of ATiO3 materials.ca_CA
dc.format.extent34 p.ca_CA
dc.format.mimetypeapplication/pdfca_CA
dc.language.isoengca_CA
dc.publisherRoyal Society of Chemistryca_CA
dc.relation.isPartOfPhys. Chem. Chem. Phys., 2018, 20ca_CA
dc.rightsThis journal is © the Owner Societies 2018ca_CA
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/*
dc.titleA DFT investigation of the role of oxygen vacancies on the structural, electronic and magnetic properties of ATiO3 (A = Mn, Fe, Ni) multiferroic materialsca_CA
dc.typeinfo:eu-repo/semantics/articleca_CA
dc.identifier.doihttps://doi.org/10.1039/c8cp04443k
dc.relation.projectIDPrometeoII/ 2014/022, Prometeo/2016/079, ACOMP/2014/270, ACOMP/ 2015/1202, CTQ2015-65207-P, FAPESP 2013/07296-2ca_CA
dc.rights.accessRightsinfo:eu-repo/semantics/openAccessca_CA
dc.relation.publisherVersionhttps://pubs.rsc.org/en/content/articlelanding/2018/cp/c8cp04443k#!divAbstractca_CA
dc.date.embargoEndDate2019-08-29
dc.type.versioninfo:eu-repo/semantics/acceptedVersionca_CA


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