All organic polyimide‐based composite films with high intrinsic polarization for superior energy density and low dielectric loss

Author:

Wang Yu1,Yang Wenlong2ORCID,Lin Jiaqi34,Liu Xinmei5,Zuo Yuhang5,Sun Hongguo6,Yang Ying7,He Xunjun1

Affiliation:

1. School of Electrical and Electronic Engineering Harbin University of Science and Technology Harbin China

2. School of Measurement and Communication Engineering Harbin University of Science and Technology Harbin China

3. Key Laboratory of Engineering Dielectrics and Its Application Ministry of Education, Harbin University of Science and Technology Harbin China

4. School of Science Harbin University of Science and Technology Harbin China

5. School of Material Science and Chemical Engineering Harbin University of Science and Technology Harbin China

6. Polymer Composites Engineering Laboratory, Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun China

7. State Key Laboratory of Mechanics and Control of Mechanical Structures Nanjing University of Aeronautics and Astronautics Nanjing China

Abstract

AbstractA simple and low‐cost approach was proposed to fabricate poly(vinylidene fluoride) (PVDF) and polyimide‐poly(amidic acid) (PI‐PAA) all‐organic hybrid films with excellent dielectric performance by solution casting and thermal imidization process. The results showed that the introduction of PVDF and PAA molecular chains into PI matrix significantly enhanced the dielectric permittivity and energy density of PI‐based composites. The permittivity and energy density of 15 wt% PI‐PAA/PVDF composites were 4.83 at 103 Hz and 5.55 J cm−3, which were 52% and 107% higher than that of PI (3.18 at 103 Hz, 2.68 J cm−3). In addition, the dielectric loss of 15 wt% PI‐PAA/PVDF composites was still maintained at a low level (0.009 at 103 Hz). The molecular dynamics results showed that the polarization strength of composites mainly originated from the intrinsic polarization strength. The intrinsic polarization strength of PI‐PAA/PVDF in the composites was 1010 times higher than interfacial polarization strength, and interfacial polarization was negligible. There was no significant difference between the self‐diffusion coefficients of 15 wt% PI‐PAA/PVDF and PI‐PAA, indicating that the relaxation polarization of polymer molecular chains was suppressed. This work provides an effective way for the preparation of dielectric for all organic high voltage direct current system.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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