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dc.creatorFilipović, Suzana
dc.creatorObradović, Nina
dc.creatorCorlett, Cole
dc.creatorFahrenholtz, William G.
dc.creatorRosenschon, Martin
dc.creatorFüglein, Ekkehard
dc.creatorDojčilović, Radovan
dc.creatorTošić, Dragana
dc.creatorPetrović, Jovana
dc.creatorĐorđević, Antonije
dc.creatorVlahović, Branislav
dc.creatorPavlović, Vladimir B.
dc.date.accessioned2024-04-08T11:34:19Z
dc.date.available2024-12-28
dc.date.issued2024
dc.identifier.issn0021-8995
dc.identifier.issn1097-4628
dc.identifier.urihttps://dais.sanu.ac.rs/123456789/16516
dc.description.abstractCeramic/polymer composites can be chemically stable, mechanically strong, and flexible, which make them candidates for electric devices, such as pressure or temperature sensors, energy storage or harvesting devices, actuators, and so forth. Depending on the application, various electrical properties are of importance. Polymers usually have low dielectric permittivity, but increased dielectric permittivity can be achieved by the addition of the ceramic fillers with high dielectric constant. With the aim to enhance dielectric properties of the composite without loss of flexibility, 5 wt% of BaTiO3-Fe2O3 powder was added into a polyvinylidene fluoride matrix. The powder was prepared by different synthesis conditions to produce core/shell structures. The effect of the phase composition and morphology of the BaTiO3-Fe2O3 core/shell filler on the structure and lattice dynamics of the polymer composites was investigated. Based on the results of the thermal analysis, various parameters of ceramic/polymer composites were determined. Differences in the phase composition and morphology of the filler have an influence on the formation of various polyvinylidene fluoride allomorphs and the degree of crystallinity. Furthermore, the dielectric performances of pure polyvinylidene fluoride and the polymer/ceramic composites were measured.en
dc.publisherWileyen
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200175/RS//en
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200116/RS//en
dc.relationinfo:eu-repo/grantAgreement/MESTD/inst-2020/200103/RS//en
dc.relationSerbian Academy of Sciences and Arts, Project F-133en
dc.relationUS National Science Foundation (Grant: DMR EiR 2101041, NSF DMR PREM 2122044)en
dc.relationUS Department of Energy/National Nuclear Security Administration (Grant: NA0003979)en
dc.relationUSA NSF PREM [DMR 11523617]en
dc.relation.isversionofhttps://hdl.handle.net/21.15107/rcub_dais_16243
dc.relation.isversionofhttps://doi.org/10.1002/app.55040
dc.rightsembargoedAccess
dc.rights.urihttps://creativecommons.org/licenses/by-nc/4.0/
dc.sourceJournal of Applied Polymer Scienceen
dc.subjectcomposite materialsen
dc.subjectpolyvinylidene fluorideen
dc.subjectBaTiO3-Fe2O3en
dc.titleEffect of the filler morphology on the crystallization behavior and dielectric properties of the polyvinylidene fluoride‐based compositeen
dc.typearticleen
dc.rights.licenseBY-NC
dc.citation.spagee55040
dc.citation.volume141
dc.citation.issue10
dc.identifier.doi10.1002/app.55040
dc.identifier.scopus2-s2.0-85180715292
dc.description.otherThis is the peer reviewed version of the following article: Filipović, Suzana, Obradović, Nina, Corlett, Cole, Fahrenholtz, William G., Rosenschon, Martin, Füglein, Ekkehard, Dojčilović, Radovan, Tošić, Dragana, Petrović, Jovana, Đorđević, Antonije, Vlahović, Branislav, Pavlović, Vladimir B., "Effect of the filler morphology on the crystallization behavior and dielectric properties of the polyvinylidene fluoride‐based composite" in Journal of Applied Polymer Science, 141, no. 10 (2024), [https://doi.org/10.1002/app.55040]en
dc.description.otherPublished version: [https://hdl.handle.net/21.15107/rcub_dais_16243]
dc.type.versionacceptedVersion
dc.identifier.rcubhttps://hdl.handle.net/21.15107/rcub_dais_16516


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