Li Chengwei, Shi Liuwei, Yang Wenyao, Zhou Yujiu, Li Xiali, Zhang Chengguang, Yang Yajie
State Key Laboratory of Electronic Thin Films and Integrated Devices, School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 610054, People's Republic of China.
Chongqing Engineering Research Center of New Energy Storage Devices and Applications, Chongqing University of Arts and Sciences, Chongqing, 402160, People's Republic of China.
Nanoscale Res Lett. 2020 Feb 6;15(1):36. doi: 10.1186/s11671-020-3270-x.
Construct dielectric films with high energy density and efficiency are the key factor to fabricate high-performance dielectric film capacitors. In this paper, an all organic composite film was constructed based on high dielectric polymer and linear dielectric polymer. After the optimized polycondensation reaction of a linear dielectric polymer aromatic polythiourea (ArPTU), the proper molecular weight ArPTU was obtained, which was introduced into poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene) (PVDF-TrFE-CFE) terpolymer for a composite dielectrics. The results indicate that the addition of ArPTU molecules reduces the dielectric loss and improves the breakdown field strength of the PVDF-TrFE-CFE effectively. For the PVDF-TrFE-CFE/ArPTU (90/10) composite film, the maximum energy density about 22.06 J/cm at 407.57 MV/m was achieved, and high discharge efficiency about 72% was presented. This composite material can be casted on flexible substrate easily, and PVDF-TrFE-CFE/ArPTU organic composite films having high energy density, high breakdown field strength, low dielectric loss, and higher discharge efficiency are obtained. This is an unreported exploration about high energy density organic dielectric films based on PVDF-TrFE-CFE matrix and linear polymer dielectrics, and the findings of this research can provide a simple and scalable method for producing flexible high energy density materials for energy storage devices.
构建具有高能量密度和效率的介电薄膜是制造高性能介电薄膜电容器的关键因素。本文基于高介电聚合物和线性介电聚合物构建了一种全有机复合薄膜。通过对线性介电聚合物芳香聚硫脲(ArPTU)进行优化缩聚反应,得到了合适分子量的ArPTU,并将其引入聚(偏二氟乙烯 - 三氟乙烯 - 氯氟乙烯)(PVDF-TrFE-CFE)三元共聚物中制备复合电介质。结果表明,ArPTU分子的加入有效降低了介电损耗并提高了PVDF-TrFE-CFE的击穿场强。对于PVDF-TrFE-CFE/ArPTU(90/10)复合薄膜,在407.57 MV/m时实现了约22.06 J/cm³的最大能量密度,并呈现出约72%的高放电效率。这种复合材料可以很容易地浇铸在柔性基板上,从而获得具有高能量密度、高击穿场强、低介电损耗和较高放电效率的PVDF-TrFE-CFE/ArPTU有机复合薄膜。这是关于基于PVDF-TrFE-CFE基体和线性聚合物电介质的高能量密度有机介电薄膜的一项未报道的探索,本研究结果可为生产用于储能设备的柔性高能量密度材料提供一种简单且可扩展的方法。