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Transport mechanisms and dielectric relaxation of epoxy nanocomposites in DC to microwave range

机译:DC中环氧纳米复合材料的运输机理和介电弛豫到微波范围

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Using several methods we measure the effective complex permittivity of epoxy composites realized by shear mixing and filled with carbonaceous (carbon black (CB), single wall CNT (SWCNT), and multiwalled carbon nanotube (MWCNT) over nine decades of frequency. The spectral analysis of permittivity of these nanocomposites is in good agreement with Jonscher's modelling. We point out, taking these examples, that the experimental frequency dependence of the effective permittivity has a range of interesting properties. Likely transport mechanisms responsible for the dielectric relaxation in these samples can be modeled by the dipolar relaxation and anomalous low frequency dispersion (LFD) below and above percolation, respectively.
机译:使用几种方法,我们测量通过剪切混合实现的环氧复合材料的有效复合介电常数,并填充碳质(CB),单壁CNT(SWCNT)和多壁碳纳米管(MWCNT)超过九十年的频率。光谱分析这些纳米复合材料的介电常数与Jonscher的建模吻合良好。我们指出,采取这些示例,使得有效介电常数的实验频率依赖性具有一系列有趣的特性。可能负责这些样品中的介电松弛的运输机制可以是分别由双极弛豫和低于低频分散体(LFD)和高于渗透的模拟。

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