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Thermal properties and electric modulus approach to the analysis of dielectric relaxation of nanocomposites based on carbon dots

机译:基于碳点的纳米复合材料介电弛豫分析的热性能和电模型方法

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The investigation of thermal and dielectric properties of carbon dots dispersed in PMMA has been conducted in freestanding thin solid films. Thermal properties were studied using differential scanning calorimetry. Impedance spectroscopy, in the frequency range 100 Hz to 100 kHz and temperatures between 200 and 390 K, was used for the electrical characterization. Using the electric modulus formalism, it has been found that the Havriliak-Negami model of dielectric relaxation is adequate to fit the experimental data, from which the relaxation parameters can be calculated. The inclusion of C-Dots in PMMA provides a plasticizing effect on the polymer structure, giving rise to an increase in the mobility of PMMA chains, and consequent changes in the relaxation parameters.
机译:在PMMA中分散在PMMA中的碳点的热和介电性质的研究已经在独立的薄实心膜中进行。 使用差示扫描量热法研究了热性能。 阻抗光谱,在100Hz至100kHz的频率范围内,200和390 k之间的温度用于电学表征。 已经发现,已经发现,介电弛豫的Havriliak-Negami模型足以适合实验数据,可以计算放松参数。 在PMMA中包含C点在聚合物结构上为塑化作用提供增塑作用,从而产生PMMA链的迁移率的增加,并且随之而来的松弛参数的变化。

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