Xu Ranran, Xing Jiwen, Du Boxue, Xiao Meng, Li Jin
Key Laboratory of Smart Grid of Education Ministry, School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China.
Materials (Basel). 2021 Mar 3;14(5):1185. doi: 10.3390/ma14051185.
In this paper, an improved method for the electric performance of polypropylene (PP) film was proposed to promote the safety and stability of power capacitors. Modified PP films containing three different polycyclic compounds were prepared, which showed good thermal properties and decreased DC conductivity. The DC breakdown strength of the modified PP films under both positive and negative voltage is increased compared with that of the original film. The deep traps introduced by polycyclic compounds and the decreased carrier mobility give an explanation of the decreased DC conductivity. A quantum chemistry calculation was further performed to clarify the mechanism for improving electrical performance, presenting that polycyclic compounds with a high electron affinity and low ionization energy can capture high-energy electrons, protecting the PP molecular chain from attack, and then increase the breakdown strength. It is concluded that the modified PP films by polycyclic compounds have great potential in improving the insulating properties of power capacitors.
本文提出了一种改进聚丙烯(PP)薄膜电性能的方法,以提高电力电容器的安全性和稳定性。制备了含有三种不同多环化合物的改性PP薄膜,其具有良好的热性能且直流电导率降低。与原始薄膜相比,改性PP薄膜在正负电压下的直流击穿强度均有所提高。多环化合物引入的深陷阱和载流子迁移率的降低解释了直流电导率降低的原因。进一步进行了量子化学计算以阐明改善电性能的机制,结果表明具有高电子亲和力和低电离能的多环化合物可以捕获高能电子,保护PP分子链免受攻击,进而提高击穿强度。得出结论,多环化合物改性的PP薄膜在改善电力电容器绝缘性能方面具有巨大潜力。