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Predictive Optimization of Electrical Conductivity of Polycarbonate Composites at Different Concentrations of Carbon Nanotubes: A Valorization of Conductive Nanocomposite Theoretical Models

机译:不同浓度碳纳米管中聚碳酸酯复合材料电导率的预测优化:导电纳米复合理论模型的算法

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摘要

Polycarbonate—carbon nanotube (PC-CNT) conductive composites containing CNT concentration covering 0.25–4.5 wt.% were prepared by melt blending extrusion. The alternating current (AC) conductivity of the composites has been investigated. The percolation threshold of the PC-CNT composites was theoretically determined using the classical theory of percolation followed by numerical analysis, quantifying the conductivity of PC-CNT at the critical volume CNT concentration. Different theoretical models like Bueche, McCullough and Mamunya have been applied to predict the AC conductivity of the composites using a hyperparameter optimization method. Through multiple series of the hyperparameter optimization process, it was found that McCullough and Mamunya theoretical models for electrical conductivity fit remarkably with our experimental results; the degree of chain branching and the aspect ratio are estimated to be 0.91 and 167 according to these models. The development of a new model based on a modified Sohi model is in good agreement with our data, with a coefficient of determination R2=0.922 for an optimized design model. The conductivity is correlated to the electromagnetic absorption (EM) index showing a fine fit with Steffen–Boltzmann (SB) model, indicating the ultimate CNTs volume concentration for microwave absorption at the studied frequency range.
机译:含有CNT浓度的聚碳酸酯 - 碳纳米管(PC-CNT)导电复合材料覆盖0.25-4.5重量%。通过熔融共混挤出制备%。已经研究了复合材料的交流(AC)电导率。使用经典渗滤理论之后,使用经典的渗透学理论地测定PC-CNT复合材料的渗透阈值,然后在临界体积CNT浓度下量化PC-CNT的电导率。已经应用了Bueche,McCullough和Mamunya等不同的理论模型,以预测使用HyperParameter优化方法来预测复合材料的交流电导率。通过多次系列的封路计优化过程,发现McCullough和Mamunya用于电导率的理论模型与我们的实验结果非常相当;根据这些模型估计链分支的程度和纵横比估计为0.91和167。基于修改的SOHI模型的新模型的开发与我们的数据吻合良好,具有用于优化设计模型的确定系数R2 = 0.922。电导率与显示与Steffen-Boltzmann(Sb)模型进行精细配合的电磁吸收(EM)指数相关的电导率,表明在研究频率范围内的微波吸收的最终CNTS体积浓度。

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