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Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments

By means of magnetization treatments at ambient temperature and elevated temperatures, the nano- and micron-bismuth ferrate/low density polyethylene (BiFeO(3)/LDPE) dielectric composites are developed to explore the material processing method to modify the crystalline morphology, magnetic and dielec...

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Detalles Bibliográficos
Autores principales: Song, Wei, Fan, Yu-Zhang, Hua, Yu, Sun, Wei-Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982264/
https://www.ncbi.nlm.nih.gov/pubmed/31888019
http://dx.doi.org/10.3390/ma13010120
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author Song, Wei
Fan, Yu-Zhang
Hua, Yu
Sun, Wei-Feng
author_facet Song, Wei
Fan, Yu-Zhang
Hua, Yu
Sun, Wei-Feng
author_sort Song, Wei
collection PubMed
description By means of magnetization treatments at ambient temperature and elevated temperatures, the nano- and micron-bismuth ferrate/low density polyethylene (BiFeO(3)/LDPE) dielectric composites are developed to explore the material processing method to modify the crystalline morphology, magnetic and dielectric properties. The magnetic field treatment can induce the dipole in the LDPE macromolecular chain which leads to preferred orientation of polyethylene crystal grains to the direction of the magnetization field. The surface morphology of the materials measured by atomic force microscope (AFM) implies that the LDPE macromolecular chains in BiFeO(3)/LDPE composites have been orderly arranged and form thicker lamellae accumulated with a larger spacing after high temperature magnetization, resulting in the increased dimension and orientation of spherulites. The residual magnetization intensities of BiFeO(3)/LDPE composites have been significantly improved by magnetization treatments at ambient temperature. After this magnetization at ambient temperature, the M(R) of nano- and micron-BiFeO(3)/LDPE composites approach to 4.415 × 10(−3) and 0.690 × 10(−3) emu/g, respectively. The magnetic moments of BiFeO(3) fillers are arranged parallel to the magnetic field direction, leading to appreciable enhancement of the magnetic interactions between BiFeO(3) fillers, which will inhibit the polarization of the electric dipole moments at the interface between BiFeO(3) fillers and the LDPE matrix. Therefore, magnetization treatment results in the lower dielectric constant and higher dielectric loss of BiFeO(3)/LDPE composites. It is proven that the magnetic and dielectric properties of polymer dielectric composites can be effectively modified by the magnetization treatment in the melt blending process of preparing composites, which is expected to provide a technical strategy for developing magnetic polymer dielectrics.
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spelling pubmed-69822642020-02-07 Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments Song, Wei Fan, Yu-Zhang Hua, Yu Sun, Wei-Feng Materials (Basel) Article By means of magnetization treatments at ambient temperature and elevated temperatures, the nano- and micron-bismuth ferrate/low density polyethylene (BiFeO(3)/LDPE) dielectric composites are developed to explore the material processing method to modify the crystalline morphology, magnetic and dielectric properties. The magnetic field treatment can induce the dipole in the LDPE macromolecular chain which leads to preferred orientation of polyethylene crystal grains to the direction of the magnetization field. The surface morphology of the materials measured by atomic force microscope (AFM) implies that the LDPE macromolecular chains in BiFeO(3)/LDPE composites have been orderly arranged and form thicker lamellae accumulated with a larger spacing after high temperature magnetization, resulting in the increased dimension and orientation of spherulites. The residual magnetization intensities of BiFeO(3)/LDPE composites have been significantly improved by magnetization treatments at ambient temperature. After this magnetization at ambient temperature, the M(R) of nano- and micron-BiFeO(3)/LDPE composites approach to 4.415 × 10(−3) and 0.690 × 10(−3) emu/g, respectively. The magnetic moments of BiFeO(3) fillers are arranged parallel to the magnetic field direction, leading to appreciable enhancement of the magnetic interactions between BiFeO(3) fillers, which will inhibit the polarization of the electric dipole moments at the interface between BiFeO(3) fillers and the LDPE matrix. Therefore, magnetization treatment results in the lower dielectric constant and higher dielectric loss of BiFeO(3)/LDPE composites. It is proven that the magnetic and dielectric properties of polymer dielectric composites can be effectively modified by the magnetization treatment in the melt blending process of preparing composites, which is expected to provide a technical strategy for developing magnetic polymer dielectrics. MDPI 2019-12-26 /pmc/articles/PMC6982264/ /pubmed/31888019 http://dx.doi.org/10.3390/ma13010120 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Song, Wei
Fan, Yu-Zhang
Hua, Yu
Sun, Wei-Feng
Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title_full Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title_fullStr Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title_full_unstemmed Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title_short Magnetic and Dielectric Properties of Nano- and Micron-BiFeO(3)/LDPE Composites with Magnetization Treatments
title_sort magnetic and dielectric properties of nano- and micron-bifeo(3)/ldpe composites with magnetization treatments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982264/
https://www.ncbi.nlm.nih.gov/pubmed/31888019
http://dx.doi.org/10.3390/ma13010120
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