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通过不同的S形模型确定外导电聚合物复合材料电导率渗流阈值的新见解。

A New Insight in Determining the Percolation Threshold of Electrical Conductivity for Extrinsically Conducting Polymer Composites through Different Sigmoidal Models.

作者信息

Rahaman Mostafizur, Aldalbahi Ali, Govindasami Periyasami, Khanam Noorunnisa P, Bhandari Subhendu, Feng Peter, Altalhi Tariq

机构信息

Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

Department of Mechanical and Industrial Engineering, Qatar University, Doha 2713, Qatar.

出版信息

Polymers (Basel). 2017 Oct 19;9(10):527. doi: 10.3390/polym9100527.

Abstract

The electrical conductivity of extrinsically conducting polymer composite systems passes through a transition state known as percolation threshold. A discussion has been made on how different Sigmoidal models (S-models), such as Sigmoidal⁻Boltzmann (SB), Sigmoidal⁻Dose Response (SD), Sigmoidal⁻Hill (SH), Sigmoidal⁻Logistic (SL), and Sigmoidal⁻Logistic-1 (SL-1), can be applied to predict the percolation threshold of electrical conductivity for ethylene vinyl acetate copolymer (EVA) and acrylonitrile butadiene copolymer (NBR) conducting composite systems filled with different carbon fillers. An interesting finding that comes from these observations is that the percolation threshold for electrical conductivity determined by SB and SD models are similar, whereas, the other models give different result when estimated for a particular composite system. This similarity and discrepancy in the results of percolation threshold have been discussed by considering the strength, weakness, and limitation of the models. The percolation threshold value for the composites has also been determined using the classical percolation theory and compared with the sigmoidal models. Moreover, to check the universal applicability, these Sigmoidal models have also been tested on results from some published literature. Finally, it is revealed that, except SL-1 model, the remaining models can successfully be used to determine the percolation threshold of electrical conductivity for extrinsically conductive polymer composites.

摘要

外在导电聚合物复合体系的电导率会经历一个被称为渗流阈值的转变状态。针对不同的S型模型(S模型),如S型-玻尔兹曼(SB)、S型-剂量响应(SD)、S型-希尔(SH)、S型-逻辑斯蒂(SL)和S型-逻辑斯蒂-1(SL-1),如何应用于预测填充不同碳填料的乙烯-醋酸乙烯酯共聚物(EVA)和丙烯腈-丁二烯共聚物(NBR)导电复合体系的电导率渗流阈值进行了讨论。从这些观察中得出的一个有趣发现是,由SB和SD模型确定的电导率渗流阈值相似,而对于特定的复合体系进行估计时,其他模型给出的结果不同。通过考虑这些模型的优点、缺点和局限性,对渗流阈值结果中的这种相似性和差异进行了讨论。还使用经典渗流理论确定了复合材料的渗流阈值,并与S型模型进行了比较。此外,为检验普遍适用性,还对一些已发表文献的结果进行了这些S型模型的测试。最后发现,除SL-1模型外,其余模型均可成功用于确定外在导电聚合物复合材料的电导率渗流阈值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9ec/6418723/1dad5e237daa/polymers-09-00527-g001.jpg

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