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Impact of cellulose nanocrystals reinforcement on molecular dynamics and dielectric properties of PCL-based polyurethane

机译:纤维素纳米晶体增强对PCL基聚氨酯分子动力学和介电性能的影响

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The thermal and dielectric properties of polymer nanocomposites based on polycaprolactone diol-based PU matrix filled with various weight fractions of cellulose nanocrystals (CNCs) (from 0 to 10 wt%) extracted from the rachis of date palm tree were investigated by differential scanning calorimetry (DSC) and broadband dielectric spectroscopy. The emphasis was on clarifying the impact of the addition of CNC nanofillers on the molecular mobility of the PU matrix. Different dielectric relaxations have been found and the corresponding activation energies have been calculated, by means of the Havriliak-Negami model after fitting the dielectric data. The outcomes were explored in terms of molecular dynamics and interfacial processes. With 2.5 wt% of CNC, the strongest adhesion between matrix and reinforcement was acquired. This research was supported by the use of DSC for thermal properties.
机译:采用差示扫描量热法(DSC)和宽带介电光谱法研究了以聚己内酯二醇基PU为基体的聚合物纳米复合材料的热性能和介电性能,其中填充了从椰枣树轴中提取的不同重量分数的纤维素纳米晶(CNCs)(0-10 wt%)。重点在于阐明添加CNC纳米填料对PU基质分子流动性的影响。在对介电数据进行拟合后,利用Havriliak-Negami模型发现了不同的介电弛豫,并计算了相应的活化能。从分子动力学和界面过程方面探讨了结果。当CNC质量分数为2.5%时,基体与增强体之间的粘附力最强。本研究得到了DSC热性能研究的支持。

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