Cargando…

Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films

[Image: see text] The maximum capacitive energy stored in polymeric dielectric capacitors, which are ubiquitous in high-power-density devices, is dictated by the dielectric breakdown strength of the dielectric polymer. The fundamental mechanisms of the dielectric breakdown, however, remain unclear....

Descripción completa

Detalles Bibliográficos
Autores principales: Singh, Maninderjeet, Dong, Mei, Wu, Wenjie, Nejat, Roushanak, Tran, David K., Pradhan, Nihar, Raghavan, Dharmaraj, Douglas, Jack F., Wooley, Karen L., Karim, Alamgir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562468/
https://www.ncbi.nlm.nih.gov/pubmed/36254316
http://dx.doi.org/10.1021/acspolymersau.2c00014
_version_ 1784808179234766848
author Singh, Maninderjeet
Dong, Mei
Wu, Wenjie
Nejat, Roushanak
Tran, David K.
Pradhan, Nihar
Raghavan, Dharmaraj
Douglas, Jack F.
Wooley, Karen L.
Karim, Alamgir
author_facet Singh, Maninderjeet
Dong, Mei
Wu, Wenjie
Nejat, Roushanak
Tran, David K.
Pradhan, Nihar
Raghavan, Dharmaraj
Douglas, Jack F.
Wooley, Karen L.
Karim, Alamgir
author_sort Singh, Maninderjeet
collection PubMed
description [Image: see text] The maximum capacitive energy stored in polymeric dielectric capacitors, which are ubiquitous in high-power-density devices, is dictated by the dielectric breakdown strength of the dielectric polymer. The fundamental mechanisms of the dielectric breakdown, however, remain unclear. Based on a simple free-volume model of the polymer fluid state, we hypothesized that the free ends of linear polymer chains might act as “defect” sites, at which the dielectric breakdown can initiate. Thus, the dielectric breakdown strength of cyclic polymers should exhibit enhanced stability in comparison to that of their linear counterparts having the same composition and similar molar mass. This hypothesis is supported by the ∼50% enhancement in the dielectric breakdown strength and ∼80% enhancement in capacitive energy density of cyclic polystyrene melt films in comparison to corresponding linear polystyrene control films. Furthermore, we observed that cyclic polymers exhibit a denser packing density than the linear chain melts, an effect that is consistent with and could account for the observed property changes. Our work demonstrates that polymer topology can significantly influence the capacitive properties of polymer films, and correspondingly, we can expect polymer topology to influence the gas permeability, shear modulus, and other properties of thin films dependent on film density.
format Online
Article
Text
id pubmed-9562468
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-95624682022-10-15 Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films Singh, Maninderjeet Dong, Mei Wu, Wenjie Nejat, Roushanak Tran, David K. Pradhan, Nihar Raghavan, Dharmaraj Douglas, Jack F. Wooley, Karen L. Karim, Alamgir ACS Polym Au [Image: see text] The maximum capacitive energy stored in polymeric dielectric capacitors, which are ubiquitous in high-power-density devices, is dictated by the dielectric breakdown strength of the dielectric polymer. The fundamental mechanisms of the dielectric breakdown, however, remain unclear. Based on a simple free-volume model of the polymer fluid state, we hypothesized that the free ends of linear polymer chains might act as “defect” sites, at which the dielectric breakdown can initiate. Thus, the dielectric breakdown strength of cyclic polymers should exhibit enhanced stability in comparison to that of their linear counterparts having the same composition and similar molar mass. This hypothesis is supported by the ∼50% enhancement in the dielectric breakdown strength and ∼80% enhancement in capacitive energy density of cyclic polystyrene melt films in comparison to corresponding linear polystyrene control films. Furthermore, we observed that cyclic polymers exhibit a denser packing density than the linear chain melts, an effect that is consistent with and could account for the observed property changes. Our work demonstrates that polymer topology can significantly influence the capacitive properties of polymer films, and correspondingly, we can expect polymer topology to influence the gas permeability, shear modulus, and other properties of thin films dependent on film density. American Chemical Society 2022-06-23 /pmc/articles/PMC9562468/ /pubmed/36254316 http://dx.doi.org/10.1021/acspolymersau.2c00014 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Singh, Maninderjeet
Dong, Mei
Wu, Wenjie
Nejat, Roushanak
Tran, David K.
Pradhan, Nihar
Raghavan, Dharmaraj
Douglas, Jack F.
Wooley, Karen L.
Karim, Alamgir
Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title_full Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title_fullStr Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title_full_unstemmed Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title_short Enhanced Dielectric Strength and Capacitive Energy Density of Cyclic Polystyrene Films
title_sort enhanced dielectric strength and capacitive energy density of cyclic polystyrene films
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9562468/
https://www.ncbi.nlm.nih.gov/pubmed/36254316
http://dx.doi.org/10.1021/acspolymersau.2c00014
work_keys_str_mv AT singhmaninderjeet enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT dongmei enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT wuwenjie enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT nejatroushanak enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT trandavidk enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT pradhannihar enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT raghavandharmaraj enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT douglasjackf enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT wooleykarenl enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms
AT karimalamgir enhanceddielectricstrengthandcapacitiveenergydensityofcyclicpolystyrenefilms