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The Effective Dielectric Constant of a Composite with Conductive Nanoparticles

机译:导电纳米粒子复合材料的有效介电常数

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A model of a composite consisting of a dielectric base with a small admixture of semiconductor nanoparticles having the shape of identical ellipsoids of revolution is considered. A uniform spatial distribution of the impurity and a uniform distribution of the directivity of the axes of revolution are assumed.It is shown that the obtained formulas for the effective dielectric constant of the composite correspond to a superposition of two Debye processes with different relaxation times. The dielectric constant has a strong nonlinear dependence on the ratio of the semi-axes of the ellipsoids of revolution. This feature allows one to obtain good agreement with experimental data, suggesting the possibility of aggregation of nanoparticles even at low concentrations.It follows from the model that in the absence of an increase in the aggregation of conducting nanoparticles with an increase in concentration, a linear dependence of the dielectric constant of the composite on the impurity concentration takes place. For a composite with growing aggregation of nanoparticles, this dependence exhibits nonlinear growth.
机译:考虑由介电基体和少量具有相同旋转椭圆体形状的半导体纳米颗粒混合物组成的复合材料模型。假设杂质的空间分布均匀,并且旋转轴的方向性分布均匀。结果表明,所得复合材料有效介电常数的公式对应于两个具有不同弛豫时间的德拜过程的叠加。介电常数对旋转椭球的半轴之比具有很强的非线性依赖性。这一特征使人们可以与实验数据很好地吻合,这表明即使在低浓度下纳米颗粒也可能发生聚集。模型得出的结论是,在不增加浓度的情况下导电纳米颗粒聚集的情况下,线性关系是线性的。复合材料的介电常数对杂质浓度的依赖性发生。对于具有不断增长的纳米颗粒聚集的复合材料,这种依赖性表现出非线性增长。

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