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High thermal stability and high tensile strength terpolyester nanofibers containing biobased monomer: fabrication and characterization

机译:高热稳定性和高抗拉强度含有生物化单体的纳米聚酯纳米纤维:制造和表征

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This research fabricated novel nanofibers with a terpolyester of isosorbide, ethylene glycol, 1,4-cyclohexane dimethanol, and terephthalic acid (PEICT) using electrospinning and characterized their properties. The nanofibers have higher glass transition temperature ( T _(g) ) than other polyester-type polymers, and a smaller diameter nanofiber has higher T _(g) than a larger diameter nanofiber. This is due to the orientation of polymer chains inside nanofibers, which was verified by DSC and polarized ATR-FTIR. The morphology and diameter of the nanofibers affected by concentration of PEICT solution were studied by SEM. It demonstrated smooth and well-formed nanofibers, and showed an increase of the diameter with increasing concentration. In addition, the tensile property, which was confirmed by UTM, was enhanced with increasing diameter because molecular orientation existed in finer nanofibers. They show a better tensile property than general biobased nanofibers such as silk, chitosan, and gelatin. Finally, fabrication of PEICT nanofibers was optimized and characterized. They can be utilized in various industrial applications such as tissue engineering, wound dressings, and health care devices.
机译:本研究使用静电纺丝制备了具有萜烯酮,乙二醇,1,4-环己烷二甲醇和对苯二甲酸(PEICT)的萜烯聚酯的新型纳米纤维。纳米纤维具有比其他聚酯型聚合物更高的玻璃化转变温度(T _(g)),并且较小的纳米纤维具有比较大直径的纳米纤维更高的T _(g)。这是由于纳米纤维内部聚合物链的取向,由DSC和偏振ATR-FTIR验证。通过SEM研究了由致法溶液浓度影响的纳米纤维的形态和直径。它展示了光滑且形成的纳米纤维纤维纤维,并呈增加浓度增加。另外,通过utm确认的拉伸性能随着直径的增加而增强,因为在更细的纳米纤维中存在分子取向。它们显示出比丝绸,壳聚糖和明胶等一般生物化纳米纤维更好的拉伸性能。最后,优化和表征了氏族纳米纤维的制备。它们可用于各种工业应用,如组织工程,伤口敷料和医疗器械。

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