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Effects of carbon nanotubes and interphase properties on the interfacial conductivity and electrical conductivity of polymer nanocomposites

机译:碳纳米管与间隙对聚合物纳米复合材料界面电导率和电导率的影响

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L-c is the minimum length of carbon nanotubes (CNTs) required for efficient transfer of filler conductivity to polymer matrix in polymer CNT nanocomposites (PCNTs). In this work, L-c is correlated with the dimensions of the CNTs and the interphase thickness. Subsequently, the interfacial conductivity as well as the effective length and concentration of CNTs are expressed by CNT and interphase properties. Moreover, a simple model for the tunneling conductivity of PCNTs is developed with these effective terms. The impacts of all parameters on L-c, the interfacial conductivity, the fraction of CNTs in the networks and the conductivity of the PCNT are explained and justified. In addition, the predictions of the percolation threshold and conductivity are compared with the experimental results of several samples. The desirable values of interfacial conductivity are achieved by thin, short and super-conductive CNTs, high waviness and a thick interphase. However, thin and long CNTs, low waviness, a thick interphase, poor tunneling resistivity due to the polymer matrix and a short tunneling distance advantageously affect the conductivity of PCNTs, because they produce large conductive networks. The predictions also show good agreement with the experimental measurements of percolation threshold and conductivity, which confirms the developed equations. (c) 2020 Society of Chemical Industry
机译:L-C是在聚合物CNT纳米复合材料(PCNT)中有效地将填充导电性转移到聚合物基质所需的碳纳米管(CNT)的最小长度。在这项工作中,L-C与CNT的尺寸和相互厚度相关。随后,界面导电性以及CNT的有效长度和浓度由CNT和差异性表达。此外,使用这些有效术语开发了一种用于PCNT的隧道电导率的简单模型。解释了所有参数对L-C的影响,界面电导率,网络中CNT的分数以及PCNT的电导率。另外,将渗透阈值和电导率的预测与几个样品的实验结果进行了比较。通过薄,短和超导电的CNT,高波纹和厚的间间来实现界面电导率的所需值。然而,由于聚合物矩阵和短隧道距离引起的薄和长的CNT,低波纹,厚的间隔,隧道电阻率差有利地影响了PCNT的导电性,因为它们产生了大的导电网络。预测还与渗透阈值和电导率的实验测量结果表现出良好的一致性,这证实了所发达的方程。 (c)2020化学工业学会

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