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Monte Carlo simulations of electrical percolation in multicomponent thin films with nanofillers

机译:Monte Carlo用纳米填充物中多组分薄膜电渗滤的模拟

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We developed a 2D disk-stick percolation model to investigate the electrical percolation behavior of an insulating thin film reinforced with 1D and 2D conductive nanofillers via Monte Carlo simulation. Numerical predictions of the percolation threshold in single component thin films showed good agreement with the previous published work, validating our model for investigating the characteristics of the percolation phenomena. Parametric studies of size effect, i.e., length of 1D nanofiller and diameter of 2D nanofiller, were carried out to predict the electrical percolation threshold for hybrid systems. The relationships between the nanofillers in two hybrid systems was established, which showed differences from previous linear assumption. The effective electrical conductance was evaluated through Kirchhoff's current law by transforming it into a resistor network. The equivalent resistance was obtained from the distribution of nodal voltages by solving a system of linear equations with a Gaussian elimination method. We examined the effects of stick length, relative concentration, and contact patterns of 1D/2D inclusions on electrical performance. One novel aspect of our study is its ability to investigate the effective conductance of nanocomposites as a function of relative concentrations, which shows there is a synergistic effect when nanofillers with different dimensionalities combine properly. Our work provides an important theoretical basis for designing the conductive networks and predicting the percolation properties of multicomponent nanocomposites.
机译:我们开发了一个2D磁盘棒渗流模型,探讨加强与通过蒙特卡罗模拟1D和2D导电纳米填料的绝缘薄膜的电渗透行为。在单一成分的薄膜渗流阈值的数值预测显示,与以前发表的作品很好的一致性,验证我们的模型用于研究的渗流现象的特征。的尺寸效应参数研究,即,一维的纳米填料和2D纳米填料的直径的长度,进行了预测为混合系统的电渗透阈值。成立于双杂交系统中的纳米填料之间的关系,其显示来自先前线性假设差异。有效电导率是由把它变成一个电阻网络,通过基尔霍夫电流定律评估。通过求解线性方程系统与高斯消去法从节点电压的分布得到的等效电阻。我们检查了棒长度,相对浓度,并且在电性能一维/二维夹杂物的接触图案的影响。我们的研究中的一个新颖的方面是它的调查纳米复合材料的有效电导为相对浓度的函数,其示出了存在协同作用当具有不同维度的纳米填料组合正确的能力。我们的工作提供了设计的导电网络和预测多组分复合材料的渗透性能的重要理论依据。

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