School of Electrical Engineering and Computer Science, Materials Research Institute, The Pennsylvania State University, University Park, PA 16802, USA.
Nanoscale. 2017 Aug 10;9(31):10992-10997. doi: 10.1039/c7nr01932g.
In order to increase the dielectric constants of polymer-based dielectrics, composite approaches, in which inorganic fillers with much higher dielectric constants are added to the polar polymer matrix, have been investigated. However, high dielectric constant fillers cause high local electric fields in the polymer, resulting in a large reduction of the electric breakdown strength. We show that a significant increase in the dielectric constant can be achieved in polyetherimide nanocomposites with nanofillers whose dielectric constant can be similar to that of the matrix. The presence of nanofillers reduces the constraints on the dipole response to the applied electric field, thus enhancing the dielectric constant. Our results demonstrate that through nanostructure engineering, the dielectric constant of nanocomposites can be enhanced markedly without using high dielectric constant nanofillers.
为了提高聚合物基电介质的介电常数,人们研究了复合方法,即在具有更高介电常数的无机填料中加入到极性聚合物基体中。然而,高介电常数的填料会在聚合物中产生高的局部电场,导致介电击穿强度的大幅降低。我们表明,在介电常数可与基体相似的纳米填料的聚醚酰亚胺纳米复合材料中,可以显著提高介电常数。纳米填料的存在降低了偶极子对所施加电场的响应的约束,从而提高了介电常数。我们的结果表明,通过纳米结构工程,可以在不使用高介电常数纳米填料的情况下,显著提高纳米复合材料的介电常数。