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Energy Storage in Polymer Films with High Dielectric Constant Fillers

机译:高介电常数填料在聚合物薄膜中的储能

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Increasing the energy density (dielectric constant) of a polylmer film through filling with high dielectric constant nanoparticles has obvious appeal but, as shown in this paper, is difficult if spheres are employed as the fillers. This paper documents the dielectric constant, energy storage, and, most importantly, energy density which is likely to be achieved through such an approach, based on large scale 3-D field computations of spherical filler in a polymer matrix. In addition, the dielectric constant of the composite as a function of volume fraction (filling ratio) is compared with various mixing rules, none of which proves to be very good.
机译:通过填充高介电常数的纳米粒子来增加聚合物薄膜的能量密度(介电常数)具有明显的吸引力,但是,如本文所示,如果使用球体作为填充剂,则很难。本文基于聚合物基质中球形填料的大规模3-D场计算,记录了介电常数,能量存储以及最重要的是通过这种方法可能实现的能量密度。此外,将复合材料的介电常数作为体积分数(填充比)的函数与各种混合规则进行了比较,但没有一个被证明是非常好的。

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