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dc.creatorBajac, Branimir
dc.creatorVukmirovic, Jelena
dc.creatorSamardzic, Natasa
dc.creatorBanys, Juras
dc.creatorStojanović, Goran
dc.creatorBobić, Jelena
dc.creatorSrdić, Vladimir
dc.date.accessioned2023-11-20T13:14:49Z
dc.date.available2023-11-20T13:14:49Z
dc.date.issued2022
dc.identifier.issn0272-8842
dc.identifier.urihttp://rimsi.imsi.bg.ac.rs/handle/123456789/2202
dc.description.abstractIn this work different lead-free multilayered structures, composed of perovskite BaTiO3 and spinel NiFe2O4 thin layers, were obtained by solution deposition method. Structural characterization of the sintered thin films confirmed the well-defined layered structure with overall thickness from 160 to 600 nm, crystalline nature of perovskite BaTiO3 and spinel NiFe2O4 phases without secondary phases (after sintering below 900 °C) and grains on nanometer scale. Dielectric properties of the multiferroic multilayer BaTiO3/NiFe2O4 thin films were analyzed in temperature and frequency range from 30 °C to 200 °C and 100 Hz to 1 MHz, respectively. In comparison to the pure BaTiO3 films, the introduction of ferrite layer reduces dielectric response and increases low frequency permittivity dispersion of the multilayer thin films. The multilayer samples have shown relatively low dielectric loss with stronger contribution of conductivity at higher temperatures, and characteristic broad peak representing “relaxation” of the interface charge accumulation.sr
dc.language.isoensr
dc.publisherElseviersr
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200134/RS//sr
dc.rightsclosedAccesssr
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceCeramics Internationalsr
dc.subjectBaTiO3/NiFe2O4sr
dc.subjectMultilayer thin filmssr
dc.subjectSolution depositionsr
dc.subjectDielectric propertiessr
dc.titleDielectric and ferroelectric properties of multilayer BaTiO3/NiFe2O4 thin films prepared by solution deposition techniquesr
dc.typearticlesr
dc.rights.licenseBY-NC-NDsr
dc.citation.epage26386
dc.citation.issue18
dc.citation.spage26378
dc.citation.volume48
dc.identifier.doi10.1016/j.ceramint.2022.05.326
dc.type.versionupdatedVersionsr


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