Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles

This study delineates the process of fabricating and the results of investigating the dielectric properties of hybrid particles created through the integration of Poly(vinylidene fluoride) (PVDF) filled with RuO _2 coated on BaTiO _3 nanoparticles ( n BT), designated as RuO _2 – n BT. These hybrid p...

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Main Authors: Kanyapak Silakaew, Prasit Thongbai
Format: Article
Language:English
Published: IOP Publishing 2024-01-01
Series:Materials Research Express
Subjects:
Online Access:https://doi.org/10.1088/2053-1591/ad2bb4
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author Kanyapak Silakaew
Prasit Thongbai
author_facet Kanyapak Silakaew
Prasit Thongbai
author_sort Kanyapak Silakaew
collection DOAJ
description This study delineates the process of fabricating and the results of investigating the dielectric properties of hybrid particles created through the integration of Poly(vinylidene fluoride) (PVDF) filled with RuO _2 coated on BaTiO _3 nanoparticles ( n BT), designated as RuO _2 – n BT. These hybrid particles were successfully synthesized employing a simple and cost – effective solid – state reaction method. The inclusion of RuO _2 – n BT in the PVDF matrix engendered a notable enhancement in its dielectric properties. Notably, a RuO _2 – n BT fraction of 0.5 manifested a dielectric constant ( ε ′) of 107.4 and a dielectric loss tangent (tan δ ) value of 0.062 at 30 °C and 1 kHz. These findings signify the effective role of interfacial polarization occurring between the PVDF matrix and the RuO _2 – n BT hybrid particles, leading to a marked improvement in dielectric attributes. Moreover, the observed low tan δ value indicates the elimination of conductive pathways, an inhibitory effect attributed to the incorporation of RuO _2 – n BT hybrid particles. This study underscores the promising potential of RuO _2 – n BT hybrid particles in fine – tuning and augmenting the dielectric properties of polymer composites, particularly in scenarios necessitating low tan δ and high ε ′ values.
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spelling doaj.art-c942070045f84499bf21c261a1ca80ab2024-02-29T09:01:16ZengIOP PublishingMaterials Research Express2053-15912024-01-0111202630510.1088/2053-1591/ad2bb4Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particlesKanyapak Silakaew0Prasit Thongbai1https://orcid.org/0000-0001-7658-6165Materials Science and Nanotechnology Program, Faculty of Science, Khon Kaen University , Khon Kaen 40002, ThailandMaterials Science and Nanotechnology Program, Faculty of Science, Khon Kaen University , Khon Kaen 40002, Thailand; Institute of Nanomaterials Research and Innovation for Energy (IN–RIE), Khon Kaen University , Khon Kaen 40002, Thailand; Giant Dielectric and Computational Design Research Group (GD–CDR), Department of Physics, Faculty of Science, Khon Kaen University , Khon Kaen 40002, ThailandThis study delineates the process of fabricating and the results of investigating the dielectric properties of hybrid particles created through the integration of Poly(vinylidene fluoride) (PVDF) filled with RuO _2 coated on BaTiO _3 nanoparticles ( n BT), designated as RuO _2 – n BT. These hybrid particles were successfully synthesized employing a simple and cost – effective solid – state reaction method. The inclusion of RuO _2 – n BT in the PVDF matrix engendered a notable enhancement in its dielectric properties. Notably, a RuO _2 – n BT fraction of 0.5 manifested a dielectric constant ( ε ′) of 107.4 and a dielectric loss tangent (tan δ ) value of 0.062 at 30 °C and 1 kHz. These findings signify the effective role of interfacial polarization occurring between the PVDF matrix and the RuO _2 – n BT hybrid particles, leading to a marked improvement in dielectric attributes. Moreover, the observed low tan δ value indicates the elimination of conductive pathways, an inhibitory effect attributed to the incorporation of RuO _2 – n BT hybrid particles. This study underscores the promising potential of RuO _2 – n BT hybrid particles in fine – tuning and augmenting the dielectric properties of polymer composites, particularly in scenarios necessitating low tan δ and high ε ′ values.https://doi.org/10.1088/2053-1591/ad2bb4poly(vinylidene fluoride)ruthenium dioxidebarium titanatehybrid particlepolymer compositessolid–state raction method
spellingShingle Kanyapak Silakaew
Prasit Thongbai
Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
Materials Research Express
poly(vinylidene fluoride)
ruthenium dioxide
barium titanate
hybrid particle
polymer composites
solid–state raction method
title Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
title_full Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
title_fullStr Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
title_full_unstemmed Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
title_short Notably enhanced dielectric response with low loss in PVDF composites filled with RuO2–BaTiO3 hybrid particles
title_sort notably enhanced dielectric response with low loss in pvdf composites filled with ruo2 batio3 hybrid particles
topic poly(vinylidene fluoride)
ruthenium dioxide
barium titanate
hybrid particle
polymer composites
solid–state raction method
url https://doi.org/10.1088/2053-1591/ad2bb4
work_keys_str_mv AT kanyapaksilakaew notablyenhanceddielectricresponsewithlowlossinpvdfcompositesfilledwithruo2batio3hybridparticles
AT prasitthongbai notablyenhanceddielectricresponsewithlowlossinpvdfcompositesfilledwithruo2batio3hybridparticles