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Electrical Properties in PMMA/ Carbon-Dots Nanocomposite Films Below the Percolation Threshold

机译:PMMA /碳点纳米复合膜的电性能低于渗透阈值

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An investigation of the thermal, electrical and dielectric properties of original nanocomposite materials based on the incorporation of carbon dots, synthesized in organic solvents, in a poly(methyl methacrylate) (PMMA) is presented. Thermal analysis was performed using differential scanning calorimetry. Electrical and dielectric measurements were carried out in the frequency range from 100 Hz to 1 MHz and at temperatures between 200 and 400 K. The data were analyzed using two formalisms: (i) AC conductivity that has been found to follow the Jonscher's power law with double exponents, and (ii) electric modulus that permits to identify two dielectric relaxation processes. The first one, appearing at low-frequency, was attributed to the conduction effect which is consistent with the Havriliak-Negami model, and the second one, appearing at high-frequency was associated with the interfacial polarization effect. Furthermore, the analysis of the temperature dependence of AC conductivity using the Arrhenius representation indicated the existence of two mechanisms basically governing the conductivity.
机译:提出了基于在有机溶剂中合成的碳点的原始纳米复合材料的热,电气和介电性能的研究,在聚(甲基丙烯酸甲酯)(PMMA)中掺入。使用差示扫描量热法进行热分析。在从100Hz至1MHz的频率范围内进行电气和电介质测量,在200和400K之间的温度下。使用两个形式主义分析数据:(i)已发现遵循Jonscher的权力法的交流电导率双重指数,以及(ii)允许识别两个介电弛豫过程的电模量。第一个出现在低频时,归因于与HAVRIAK-Negami模型一致的传导效果,并且在高频时出现的第二个与界面偏振效果一致。此外,使用Arrhenius表示分析交流电导率的温度依赖性表明存在两种机制基本控制电导率。

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