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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Dielectric breakdown strength of epoxy bimodal-polymer-brush-grafted core functionalized silica nanocomposites
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Dielectric breakdown strength of epoxy bimodal-polymer-brush-grafted core functionalized silica nanocomposites

机译:环氧双峰聚合物-刷-接枝核官能化二氧化硅纳米复合材料的介电击穿强度

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摘要

The central goal of dielectric nanocomposite design is to create a large interfacial area between the matrix polymer and nanofillers and to use it to tailor the properties of the composite. The interface can create sites for trapping electrons leading to increased dielectric breakdown strength (DBS). Nanoparticles with a bimodal population of covalently anchored molecules were created using ligand engineering. Electrically active short molecules (oligothiophene or ferrocene) and matrix compatible long poly(glycidyl methacrylate) (PGMA) chains comprise the bimodal brush. The dielectric breakdown strength was evaluated from recessed samples and dielectric spectroscopy was used to study the dielectric constant and loss as a function of frequency. The dielectric breakdown strength and permittivity increased considerably with only 2 wt% filler loading while the dielectric loss remained comparable to the reference epoxy.
机译:介电纳米复合材料设计的主要目标是在基体聚合物和纳米填料之间创建一个较大的界面区域,并利用它来调整复合材料的性能。该界面可以形成用于俘获电子的位点,从而提高介电击穿强度(DBS)。使用配体工程技术创建具有共价锚定分子双峰的纳米粒子。电活性短分子(低聚噻吩或二茂铁)和与基质相容的长聚(甲基丙烯酸缩水甘油酯)(PGMA)链构成双峰刷。从凹进的样品中评估介电击穿强度,并使用介电谱研究介电常数和损耗随频率的变化。在仅填充2 wt%的填料的情况下,介电击穿强度和介电常数显着提高,而介电损耗仍与参考环氧树脂相当。

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