Ma Guo-Qi, Yang Tai-Bao, Li De-Long, Lv Jia-Cheng, Jia De-Zhuang, Li Yue, Xu Ling, Huang Hua-Dong, Zhong Gan-Ji, Li Zhong-Ming
College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, People's Republic of China.
School of Aeronautics and Astronautics, Sichuan University, Chengdu 610065, People's Republic of China.
ACS Appl Mater Interfaces. 2023 May 17;15(19):23701-23710. doi: 10.1021/acsami.3c01108. Epub 2023 May 4.
Polypropylene (PP) serves as an excellent commercialized polymer dielectric film owing to its high breakdown strength, excellent self-healing ability, and flexibility. However, its low dielectric constant causes the large volume of the capacitor. Constructing multicomponent polypropylene-based all-organic polymer dielectric films is a facile strategy for achieving high energy density and efficiency simultaneously. Thereinto, the interfaces between the components become the key factors that determine the energy storage performance of the dielectric films. In this work, we propose to fabricate high-performance polyamide 513 (PA513)/PP all-organic polymer dielectric films the construction of abundant well-aligned and isolated nanofibrillar interfaces. Laudably, a significant enhancement in the breakdown strength is achieved from 573.1 MV/m of pure PP to 692.3 MV/m with 5 wt % of PA513 nanofibrils. Besides, a maximum discharge energy density of about 4.4 J/cm is realized with 20 wt % of PA513 nanofibrils, which is about 1.6-folds higher than pure PP. Simultaneously, the energy efficiency of samples with modulated interfaces maintains higher than 80% up to 600 MV/m, which is much higher than pure PP of about 40.7% at 550 MV/m. This work provides a new strategy to fabricate high-performance multicomponent all-organic polymer dielectric films on an industrial scale.
聚丙烯(PP)因其高击穿强度、出色的自愈能力和柔韧性,成为一种优异的商业化聚合物介电薄膜。然而,其低介电常数导致电容器体积庞大。构建多组分聚丙烯基全有机聚合物介电薄膜是一种同时实现高能量密度和效率的简便策略。其中,各组分之间的界面成为决定介电薄膜储能性能的关键因素。在这项工作中,我们提议通过构建大量排列良好且相互隔离的纳米纤维界面来制备高性能聚酰胺513(PA513)/PP全有机聚合物介电薄膜。值得称赞的是,随着5 wt%的PA513纳米纤维的加入,击穿强度从纯PP的573.1 MV/m显著提高到692.3 MV/m。此外,加入20 wt%的PA513纳米纤维时,实现了约4.4 J/cm的最大放电能量密度,比纯PP高出约1.6倍。同时,具有调制界面的样品在高达600 MV/m时的能量效率保持高于80%,远高于纯PP在550 MV/m时约40.7%的能量效率。这项工作为在工业规模上制备高性能多组分全有机聚合物介电薄膜提供了一种新策略。