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A feasible pathway to stabilize monoclinic and tetragonal phase coexistence in barium titanate-based ceramics

dc.contributor.authorNecib, Jallouli
dc.contributor.authorLópez Sánchez, Jesús
dc.contributor.authorRubio Marcos, Fernando
dc.contributor.authorSerrano, Aída
dc.contributor.authorNavarro Palma, Elena
dc.contributor.authorPeña Moreno, Álvaro
dc.contributor.authorTaoufik, Mnasri
dc.contributor.authorSmari, Mourad
dc.contributor.authorRojas Hernández, Rocío Estefanía
dc.contributor.authorCarmona Tejero, Noemí
dc.contributor.authorMarín Palacios, María Pilar
dc.date.accessioned2023-06-22T12:34:21Z
dc.date.available2023-06-22T12:34:21Z
dc.date.issued2022-11
dc.description© 2022. The Royal Society of Chemistry The present work has been supported by the Ministerio Español de Ciencia e Innovación (MICINN) through the projects: RTI2018-095856-B-C21 and RTI2018-095303-A-C52; Ministerio de Asuntos Económicos y Transformación Digital (MINECO) by PID2020-114192RB-C41; and Comunidad de Madrid, Spain, by S2018/NMT-4321 NANOMAGCOST and ‘‘Doctorados Industriales’’ project (IND2020/IND-17375), which is co-financed by the European Social Fund. A. S. acknowledges the financial support from the Comunidad de Madrid for an ‘‘Atracción de Talento Investigador’’ contract (2017-t2/IND5395). A. P. received funding from grant PRE2019-0875001234, Ministerio de Ciencia e Innovación (MICINN), Spain. R. E. Rojas-Hernandez acknowledges financial support from the Estonian Research Council (grants PSG-466).
dc.description.abstractMultiphase coexistence has attracted significant interest in recent years because its control has entailed a significant breakthrough for the piezoelectric activity enhancement of lead-free piezoelectric oxides. However, the comprehension of phase coexistence still has many controversies including an adequate synthesis process and/or the role played by crystalline phases in functional properties. In this study, functional barium titanate [BaTiO_(3), (BTO)]-based materials with tunable functional properties were obtained by compositional modification via Bismuth (Bi) doping. Towards this aim, we systematically synthesized BTO-based materials by a sol-gel method, focusing on the control of Bi substitution in the BaTiO_(3) structure. In particular, we found that the substitution of Bi^(+3) leads to the stabilization of a monoclinic-tetragonal (M-T) phase boundary close to room temperature, which facilities the polarization process of the system. As a surprising result, we believe that the simple and cost-effective strategy and design principles described in this work open up the possibility of obtaining BTO-based lead-free ceramics with enhanced properties induced by the stabilization of the phase coexistence, expanding their application range.
dc.description.departmentDepto. de Física de Materiales
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Ciencia e Innovación (MICINN) / FEDER
dc.description.sponsorshipMinisterio de Ciencia e Innovación (MICINN)
dc.description.sponsorshipEstonian Research Council
dc.description.sponsorshipComunidad de Madrid
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/76242
dc.identifier.doi10.1039/d2tc04265g
dc.identifier.issn2050-7526
dc.identifier.officialurlhttp://dx.doi.org/10.1039/d2tc04265g
dc.identifier.relatedurlhttps://pubs.rsc.org/
dc.identifier.urihttps://hdl.handle.net/20.500.14352/72854
dc.issue.number10
dc.journal.titleJournal of materials chemistry C
dc.language.isoeng
dc.publisherRoyal Soc. Chemistry
dc.relation.projectID(RTI2018-095856-B-C21; RTI2018-095303-A-C52)
dc.relation.projectID(PRE2019-0875001234; PID2020-114192RB-C41)
dc.relation.projectIDPSG-466
dc.relation.projectID(NANOMAGCOST-CM (S2018/NMT-4321); IND2020/IND-17375; 2017-t2/IND5395)
dc.rightsAtribución 3.0 España
dc.rights.accessRightsopen access
dc.rights.urihttps://creativecommons.org/licenses/by/3.0/es/
dc.subject.cdu538.9
dc.subject.keywordPotassium-sodium-niobate
dc.subject.keywordDielectric-properties
dc.subject.keywordPolarization rotation
dc.subject.keywordElectrical-properties
dc.subject.keywordBaTiO_(3) powder
dc.subject.keywordDensification
dc.subject.keywordBa_(NO_(3))_(2)
dc.subject.keywordPrecursor
dc.subject.keywordBoundary
dc.subject.keywordBehavior
dc.subject.ucmFísica de materiales
dc.subject.ucmFísica del estado sólido
dc.subject.unesco2211 Física del Estado Sólido
dc.titleA feasible pathway to stabilize monoclinic and tetragonal phase coexistence in barium titanate-based ceramics
dc.typejournal article
dc.volume.number46
dspace.entity.typePublication
relation.isAuthorOfPublicationceb875eb-f735-40b1-8e02-26e6a8f34a5e
relation.isAuthorOfPublicationd86ef57b-de51-4d2c-b7df-d1c3ef8333c8
relation.isAuthorOfPublication3255ab49-a30c-4e80-a979-23036e378fb8
relation.isAuthorOfPublication7fdc4e1c-351d-4061-9ee4-3369d55a3feb
relation.isAuthorOfPublication.latestForDiscoveryceb875eb-f735-40b1-8e02-26e6a8f34a5e

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