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Updated: Jun 11, 2026

Application of a Coupling Agent to Improve the Dielectric Properties of Polymer-Based Nanocomposites
Published on: September 19, 2020
Significantly Enhanced High-Temperature Energy Storage Properties of Poly(ether imide) Dielectrics Enabled by
Wei Deng1,2, Mingxiu Jiang1, Lingxin Meng1
1School of Material Science and Chemical Engineering, Harbin University of Science and Technology, Harbin 150040, China.
Abstract:
Polymer dielectrics play an indispensable role in electrostatic energy storage due to their merits of high voltage resistance, lightweight, excellent flexibility, and easy processability. However, the deterioration in dielectric reliability and energy loss at high temperatures limit their versatility for broader applications. Herein, Ni@Al2O3 NFs are fabricated by encapsulating different content of nickel (Ni) nanoparticles into alumina nanofibers (Al2O3 NFs) via the electrospinning technique and employed to simultaneously improve the dielectric constant and breakdown strength of poly(ether imide) (PEI). This is realized by the coupling action of the increased interfacial polarization, Coulomb blockade effect of Ni nanoparticles, and wide bandgap of Al2O3 NFs. Notably, the PEI nanocomposite films containing 0.50 vol % Ni@Al2O3 NFs exhibit an excellent discharge energy density (Ud) of 5.8 J/cm3 at 150 °C, 262% higher than that of pristine PEI (Ud = 1.6 J/cm3), accompanied by a high efficiency of 81.3%. This work provides a promising strategy to improve the high-temperature energy storage performance of polymer-based dielectrics by exerting the synergistic effect of fillers at ultralow content.

