Key Laboratory of Engineering Dielectrics and Its Application, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, People's Republic of China.
School of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, People's Republic of China.
J Chem Phys. 2023 Jun 7;158(21). doi: 10.1063/5.0154440.
In modern electronics and power systems, good-performance dielectric capacitors have an essential function. Polymer-based dielectrics are widely used in the field of dielectric capacitors because of their large dielectric constant, flexibility, low density, and ease of processing. At present, ferroelectric polymers suffer from low breakdown field strength and high dielectric losses. How to improve the performance of dielectric materials in capacitors is still a promising research. This paper chooses the ferroelectric polymer poly(vinylidene fluoride) (PVDF) that worked as the matrix, and the linear polymers polyimide, cyanoethyl pullulan (CR-S), polyethersulfone, and cyanoethylated cellulose served as fillers. This all-organic dielectric composite produced as films working in electrostatic energy storage devices is prepared by using a casting method. Analyzing the test results, the composite film exhibited excellent electrical properties when the CR-S doping content was 5 wt. %. The organic composite dielectric based on CR-S/PVDF has a breakdown field strength of 450 MV/m, a discharge energy storage density (Ue) of 10.3 J/cm3, a high dielectric constant of 10.9, and a low dielectric loss of 0.004 at 1 kHz, which is a significant improvement compared with other dielectric composites. This all-organic dielectric composite strategy offers a new approach to achieve better-performance dielectric energy storage materials.
在现代电子和电力系统中,高性能介电电容器具有重要作用。聚合物基电介质由于具有较大的介电常数、柔韧性、低密度和易于加工等优点,在介电电容器领域得到了广泛应用。目前,铁电聚合物存在击穿场强低和介电损耗大的问题。如何提高电容器介电材料的性能仍然是一个很有前景的研究方向。本文选择铁电聚合物聚偏二氟乙烯(PVDF)作为基体,线性聚合物聚酰亚胺、氰乙基化普鲁兰(CR-S)、聚醚砜和氰乙基化纤维素作为填料。采用浇铸法制备了用于静电储能器件的全有机介电复合材料薄膜。通过测试结果分析,当 CR-S 掺杂含量为 5wt.%时,复合膜表现出优异的电学性能。基于 CR-S/PVDF 的有机复合介电材料具有 450 MV/m 的击穿场强、10.3 J/cm3 的放电储能密度(Ue)、1 kHz 时 10.9 的高介电常数和 0.004 的低介电损耗,与其他介电复合材料相比有显著提高。这种全有机介电复合材料策略为实现更好性能的介电储能材料提供了一种新方法。