材料科学
环氧树脂
复合材料
电介质
聚合物
储能
纤维
光电子学
量子力学
物理
功率(物理)
作者
Pengpeng Xu,Peilin Ma,Junyi Yu,Kun Jiang,Shanming Ke,Haitao Huang,Shuhui Yu,Yangbo Zhou,Suibin Luo
标识
DOI:10.1002/adem.202400440
摘要
Dielectric films with high discharged energy density are highly desired in electrical and electronic systems. Adding inorganic nanoparticles, especially for 1D inorganic fillers, in polymer films is recognized as one of the most effective methods to improve the electric breakdown strength, which is a key parameter of energy storage. However, 1D inorganic fillers added into thin films will undoubtedly introduce many defects and reduce the electric insulation performance. Herein, homogeneous epoxy fiber derived all‐polymer films are fabricated by electrospinning, laminating, and curing in sequence. The existing 1D structure of the epoxy films significantly enhance the dielectric constant and electric breakdown strength, resulting in a very high enhancement of 2.7 times the discharged energy storage density at 25 °C, up to 9.6 J cm −3 . Assisted by the simulation analysis, the enhanced dipole polarization and reduced current density are found to be the main reasons for the improved energy storage performances. Preparing all‐polymer films with fiber structure has proved to be an effective way to find advanced energy storage dielectric films.
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