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Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure

Improving the energy storage density of dielectrics without sacrificing charge-discharge energy storage efficiency and reliability is crucial to the performance improvement of modern electrical and electronic systems, but traditional methods of doping high-dielectric ceramics cannot achieve high ene...

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Autores principales: Feng, Mengjia, Zhang, Tiandong, Song, Chunhui, Zhang, Changhai, Zhang, Yue, Feng, Yu, Chi, Qingguo, Chen, Qingguo, Lei, Qingquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564590/
https://www.ncbi.nlm.nih.gov/pubmed/32877993
http://dx.doi.org/10.3390/polym12091972
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author Feng, Mengjia
Zhang, Tiandong
Song, Chunhui
Zhang, Changhai
Zhang, Yue
Feng, Yu
Chi, Qingguo
Chen, Qingguo
Lei, Qingquan
author_facet Feng, Mengjia
Zhang, Tiandong
Song, Chunhui
Zhang, Changhai
Zhang, Yue
Feng, Yu
Chi, Qingguo
Chen, Qingguo
Lei, Qingquan
author_sort Feng, Mengjia
collection PubMed
description Improving the energy storage density of dielectrics without sacrificing charge-discharge energy storage efficiency and reliability is crucial to the performance improvement of modern electrical and electronic systems, but traditional methods of doping high-dielectric ceramics cannot achieve high energy storage densities without sacrificing reliability and storage efficiency. Here, an all-organic energy storage dielectric composed of ferroelectric and linear polymer with a sandwich structure is proposed and successfully prepared by the electrostatic spinning method. Additionally, the effect of the ferroelectric/linear volume ratio on the dielectric properties, breakdown, and energy storage is systematically studied. The results show that the structure has good energy storage characteristics with a high energy storage density (9.7 J/cm(3)) and a high energy storage efficiency (78%). In addition, the energy storage density of the composite dielectric under high energy storage efficiency (90%) is effectively improved (25%). This result provides theoretical analysis and experience for the preparation of multilayer energy storage dielectrics which will promote the development and application of energy storage dielectrics.
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spelling pubmed-75645902020-10-27 Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure Feng, Mengjia Zhang, Tiandong Song, Chunhui Zhang, Changhai Zhang, Yue Feng, Yu Chi, Qingguo Chen, Qingguo Lei, Qingquan Polymers (Basel) Article Improving the energy storage density of dielectrics without sacrificing charge-discharge energy storage efficiency and reliability is crucial to the performance improvement of modern electrical and electronic systems, but traditional methods of doping high-dielectric ceramics cannot achieve high energy storage densities without sacrificing reliability and storage efficiency. Here, an all-organic energy storage dielectric composed of ferroelectric and linear polymer with a sandwich structure is proposed and successfully prepared by the electrostatic spinning method. Additionally, the effect of the ferroelectric/linear volume ratio on the dielectric properties, breakdown, and energy storage is systematically studied. The results show that the structure has good energy storage characteristics with a high energy storage density (9.7 J/cm(3)) and a high energy storage efficiency (78%). In addition, the energy storage density of the composite dielectric under high energy storage efficiency (90%) is effectively improved (25%). This result provides theoretical analysis and experience for the preparation of multilayer energy storage dielectrics which will promote the development and application of energy storage dielectrics. MDPI 2020-08-31 /pmc/articles/PMC7564590/ /pubmed/32877993 http://dx.doi.org/10.3390/polym12091972 Text en © 2020 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
Feng, Mengjia
Zhang, Tiandong
Song, Chunhui
Zhang, Changhai
Zhang, Yue
Feng, Yu
Chi, Qingguo
Chen, Qingguo
Lei, Qingquan
Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title_full Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title_fullStr Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title_full_unstemmed Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title_short Improved Energy Storage Performance of All-Organic Composite Dielectric via Constructing Sandwich Structure
title_sort improved energy storage performance of all-organic composite dielectric via constructing sandwich structure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564590/
https://www.ncbi.nlm.nih.gov/pubmed/32877993
http://dx.doi.org/10.3390/polym12091972
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