Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites

Small-size CaCu3Ti3.95Zr0.05O12 enhanced dielectric constant of LDPE by 88.5% due to enhancing interfacial polarization included by ultrahigh interfacial area (∼3.0 × 105 m2) and played a prominent role in homogenize electric field distribution in LDPE composite.

Bibliographic Details
Main Authors: Gao Liang, Zhang Jiaqi, Cui Yang, Wang Xuan
Format: Article
Language:English
Published: De Gruyter 2023-01-01
Series:e-Polymers
Subjects:
Online Access:https://doi.org/10.1515/epoly-2022-8100
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author Gao Liang
Zhang Jiaqi
Cui Yang
Wang Xuan
author_facet Gao Liang
Zhang Jiaqi
Cui Yang
Wang Xuan
author_sort Gao Liang
collection DOAJ
description Small-size CaCu3Ti3.95Zr0.05O12 enhanced dielectric constant of LDPE by 88.5% due to enhancing interfacial polarization included by ultrahigh interfacial area (∼3.0 × 105 m2) and played a prominent role in homogenize electric field distribution in LDPE composite.
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spelling doaj.art-1ca9f40b8f754b13b8a5ebf49971df912023-04-11T17:07:16ZengDe Gruytere-Polymers1618-72292023-01-01231109422910.1515/epoly-2022-8100Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE compositesGao Liang0Zhang Jiaqi1Cui Yang2Wang Xuan3School of Electrical and Information Engineering, Changzhou Institute of Technology, Changzhou, 213032, ChinaCollege of Electrical and Engineering, Suihua University, Suihua, 152061, ChinaSchool of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaSchool of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaSmall-size CaCu3Ti3.95Zr0.05O12 enhanced dielectric constant of LDPE by 88.5% due to enhancing interfacial polarization included by ultrahigh interfacial area (∼3.0 × 105 m2) and played a prominent role in homogenize electric field distribution in LDPE composite.https://doi.org/10.1515/epoly-2022-8100cctzo particlesldpeinterfacial areadielectric propertieselectric field distribution
spellingShingle Gao Liang
Zhang Jiaqi
Cui Yang
Wang Xuan
Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
e-Polymers
cctzo particles
ldpe
interfacial area
dielectric properties
electric field distribution
title Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
title_full Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
title_fullStr Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
title_full_unstemmed Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
title_short Effect of Zr-doped CaCu3Ti3.95Zr0.05O12 ceramic on the microstructure, dielectric properties, and electric field distribution of the LDPE composites
title_sort effect of zr doped cacu3ti3 95zr0 05o12 ceramic on the microstructure dielectric properties and electric field distribution of the ldpe composites
topic cctzo particles
ldpe
interfacial area
dielectric properties
electric field distribution
url https://doi.org/10.1515/epoly-2022-8100
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