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Electro-active nanofibres electrospun from blends of poly-vinyl cinnamate and a cholesteric liquid crystalline silicone polymer

机译:由聚乙烯基肉桂酸酯和胆甾醇型液晶有机硅聚合物的混合物静电纺制的电活性纳米纤维

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摘要

Electrospinning was used to generate polymer nanofibres from blends of poly-vinyl cinnamate (PVCN) and a cholesteric silicone polymer. Only blends that contained at least 40 % of PVCN produced fibres. Both differential scanning calorimetry and electron dispersion spectroscopy data indicate that the samples are miscible over a wide temperature interval. The variation of fibre diameter with concentration is nonlinear with a well-defined minimum corresponding to an 80 % PVCN blend. The fibres are birefringent with Kerr constants similar to that of cholesteric liquid crystals. Although not significant, the Kerr constant increases with increasing silicone polymer concentration.
机译:电纺丝用于从肉桂酸聚乙烯酯(PVCN)和胆甾醇型有机硅聚合物的混合物中生成聚合物纳米纤维。仅包含至少40%PVCN的混纺纤维。差示扫描量热法和电子弥散光谱数据均表明样品在宽的温度区间内是可混溶的。纤维直径随浓度的变化是非线性的,具有明确定义的最小值,对应于80%PVCN共混物。纤维是双折射的,具有类似于胆甾型液晶的克尔常数。尽管不显着,但Kerr常数随硅酮聚合物浓度的增加而增加。

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