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The influence of nanoparticles and their functionalization on the dielectric properties of biaxially oriented polypropylene for power capacitors

机译:纳米颗粒的影响及其官能化对电力电容器双轴取向聚丙烯的介电性能

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摘要

In this work, eleven commercially available nanoparticles are benchmarked against each other according to their potential for an application in a polypropylene (PP) based nanocomposite for thin film power capacitors. Biaxially oriented films containing a fixed concentration of 5 wt%. Al2O3, TiO2, SiO2, or POSS nanoparticles with different surface functionalization were analyzed by dielectric spectroscopy and dielectric breakdown measurements. Two particle systems emerged to increase both the dielectric breakdown strength and the reliability of the films combined with low dielectric losses. The effects of the particles were in agreement with the multicore model of Tanaka et al. The particle dispersion was analyzed on SEM images. A correlation between agglomerates and zeta potential in isopropanol was found yielding a quick analysis tool for the tendency of nanoparticles to form clusters during processing with PP. To assure comparability between the films, the real particle content was determined by incineration. The surface roughness of the film has a large influence on the breakdown behavior and was, therefore, also monitored.
机译:在这项工作中,11个市售的纳米颗粒根据它们在基于聚丙烯(PP)的纳米复合材料中的应用,彼此的薄膜电力电容器的应用基准测试。双轴取向薄膜,其固定浓度为5wt%。通过介电光谱和介电击穿测量分析Al 2 O 3,TiO 2,SiO 2或具有不同表面官能化的POTS纳米颗粒。出现两个粒子系统以增加介电击穿强度和膜的可靠性与低介电损耗相结合。颗粒的效果与Tanaka等人的多核模型一致。在SEM图像上分析颗粒分散体。发现异丙醇中的凝聚物和Zeta电位之间的相关性,得到了纳米颗粒在用PP加工过程中形成簇的快速分析工具。为了确保膜之间的可比性,通过焚烧测定真​​实颗粒含量。薄膜的表面粗糙度对击穿行为具有很大的影响,因此也监测。

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