Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process

The influence of thermal treatment on the dielectric properties and energy storage performances of a classical dielectric nanocomposite system (barium titanate/polyvinylidene fluoride PVDF) was discussed systematically. The results demonstrated that the permittivity of thermal treated nanocomposites...

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Main Authors: Yue-Mao Dang, Ming-Sheng Zheng, Jun-Wei Zha
Format: Article
Language:English
Published: World Scientific Publishing 2018-12-01
Series:Journal of Advanced Dielectrics
Subjects:
Online Access:http://www.worldscientific.com/doi/pdf/10.1142/S2010135X18500431
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spelling doaj-f837c8abfdc1482d8bc1006d14e8e1ca2020-11-25T00:27:34ZengWorld Scientific PublishingJournal of Advanced Dielectrics2010-135X2010-13682018-12-01861850043-11850043-1010.1142/S2010135X1850043110.1142/S2010135X18500431Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment processYue-Mao Dang0Ming-Sheng Zheng1Jun-Wei Zha2Tsinghua University High School, Beijing 100084, P. R. ChinaSchool of Biological and Chemical Engineering, University of Science and Technology Beijing, Beijing 100083, P. R. ChinaSchool of Biological and Chemical Engineering, University of Science and Technology Beijing, Beijing 100083, P. R. ChinaThe influence of thermal treatment on the dielectric properties and energy storage performances of a classical dielectric nanocomposite system (barium titanate/polyvinylidene fluoride PVDF) was discussed systematically. The results demonstrated that the permittivity of thermal treated nanocomposites increased and dielectric loss decreased compared with the untreated system. In addition, the energy density was also greatly improved due to the inclined residual polarization. For example, the energy density of the treated nanocomposite with 50vol.% nanofillers was 3.14 times higher than the untreated nanocomposite at 50MV/m. Moreover, the charge–discharge efficiency was also promoted from 6.36% to 56.89%. According to the viewpoint of microstructure, the improvement of the dielectric and energy storage properties would be ascribed to the suppression on void defects in the interphase of dielectric nanocomposite by employing the thermal treatment process. Finally, thermal treatment turns out to be a simple and an effective method to improve the dielectric performances and energy storage properties in the dielectric nanocomposites.http://www.worldscientific.com/doi/pdf/10.1142/S2010135X18500431Thermal treatmentBaTiO3/PVDF nanocompositesdielectric propertiesenergy storage
collection DOAJ
language English
format Article
sources DOAJ
author Yue-Mao Dang
Ming-Sheng Zheng
Jun-Wei Zha
spellingShingle Yue-Mao Dang
Ming-Sheng Zheng
Jun-Wei Zha
Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
Journal of Advanced Dielectrics
Thermal treatment
BaTiO3/PVDF nanocomposites
dielectric properties
energy storage
author_facet Yue-Mao Dang
Ming-Sheng Zheng
Jun-Wei Zha
author_sort Yue-Mao Dang
title Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
title_short Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
title_full Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
title_fullStr Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
title_full_unstemmed Improvements of dielectric properties and energy storage performances in BaTiO3/PVDF nanocomposites by employing a thermal treatment process
title_sort improvements of dielectric properties and energy storage performances in batio3/pvdf nanocomposites by employing a thermal treatment process
publisher World Scientific Publishing
series Journal of Advanced Dielectrics
issn 2010-135X
2010-1368
publishDate 2018-12-01
description The influence of thermal treatment on the dielectric properties and energy storage performances of a classical dielectric nanocomposite system (barium titanate/polyvinylidene fluoride PVDF) was discussed systematically. The results demonstrated that the permittivity of thermal treated nanocomposites increased and dielectric loss decreased compared with the untreated system. In addition, the energy density was also greatly improved due to the inclined residual polarization. For example, the energy density of the treated nanocomposite with 50vol.% nanofillers was 3.14 times higher than the untreated nanocomposite at 50MV/m. Moreover, the charge–discharge efficiency was also promoted from 6.36% to 56.89%. According to the viewpoint of microstructure, the improvement of the dielectric and energy storage properties would be ascribed to the suppression on void defects in the interphase of dielectric nanocomposite by employing the thermal treatment process. Finally, thermal treatment turns out to be a simple and an effective method to improve the dielectric performances and energy storage properties in the dielectric nanocomposites.
topic Thermal treatment
BaTiO3/PVDF nanocomposites
dielectric properties
energy storage
url http://www.worldscientific.com/doi/pdf/10.1142/S2010135X18500431
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