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Enhanced high-temperature energy storage performances in polymer dielectrics by synergistically optimizing band-gap and polarization of dipolar glass
by
Shen, Yang
, Ren, Weibin
, Jin, Zenghui
, Xu, Erxiang
, Yang, Minzheng
in
639/301/119/995
/ 639/301/119/996
/ Charge efficiency
/ Chemical synthesis
/ Condensation polymerization
/ Dielectrics
/ Dipole moments
/ Discharge
/ Energy gap
/ Energy storage
/ High temperature
/ Humanities and Social Sciences
/ Molecular weight
/ multidisciplinary
/ Optimization
/ Polarization
/ Polymer blends
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Thermal stability
2024
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Enhanced high-temperature energy storage performances in polymer dielectrics by synergistically optimizing band-gap and polarization of dipolar glass
by
Shen, Yang
, Ren, Weibin
, Jin, Zenghui
, Xu, Erxiang
, Yang, Minzheng
in
639/301/119/995
/ 639/301/119/996
/ Charge efficiency
/ Chemical synthesis
/ Condensation polymerization
/ Dielectrics
/ Dipole moments
/ Discharge
/ Energy gap
/ Energy storage
/ High temperature
/ Humanities and Social Sciences
/ Molecular weight
/ multidisciplinary
/ Optimization
/ Polarization
/ Polymer blends
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Thermal stability
2024
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Enhanced high-temperature energy storage performances in polymer dielectrics by synergistically optimizing band-gap and polarization of dipolar glass
by
Shen, Yang
, Ren, Weibin
, Jin, Zenghui
, Xu, Erxiang
, Yang, Minzheng
in
639/301/119/995
/ 639/301/119/996
/ Charge efficiency
/ Chemical synthesis
/ Condensation polymerization
/ Dielectrics
/ Dipole moments
/ Discharge
/ Energy gap
/ Energy storage
/ High temperature
/ Humanities and Social Sciences
/ Molecular weight
/ multidisciplinary
/ Optimization
/ Polarization
/ Polymer blends
/ Polymers
/ Science
/ Science (multidisciplinary)
/ Thermal stability
2024
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Enhanced high-temperature energy storage performances in polymer dielectrics by synergistically optimizing band-gap and polarization of dipolar glass
Journal Article
Enhanced high-temperature energy storage performances in polymer dielectrics by synergistically optimizing band-gap and polarization of dipolar glass
2024
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Overview
Polymer dielectrics play an irreplaceable role in electrostatic capacitors in modern electrical systems, and have been intensively studied with their polarization and breakdown strength (
E
b
) optimized for high discharged energy density (
U
d
) at elevated temperatures. Small molecules have been explored as fillers, yet they deteriorate thermal stability of matrix which limits their optimal loading to ~1 wt%. Herein, we develop a polymer blend dielectric consisting of common polyimide and a bifunctional dipolar glass polymer which are synthesized from two small molecule components with wide band-gap and large dipole moment. The bifunctional dipolar glass with large molecular weight not only maintains thermal stability of polymer blends even at a high loading of 10 wt%, but also induces substantial enhancement in polarization and
E
b
than any of individual components does, achieving an ultrahigh
U
d
of 8.34 J cm
−3
(150 °C) and 6.21 J cm
−3
(200 °C) with a charge-discharge efficiency of 90%.
The authors develop a polymer blend dielectric consisting of common polyimide and a bifunctional dipolar glass polymer which are synthesized through condensation polymerization of two small molecule components with wide band-gap and large dipole moment.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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