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Tailoring the morphology and crystallinity of poly(L-lactide acid) electrospun membranes

机译:量身定制聚L-丙交酯酸电纺膜的形貌和结晶度

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摘要

Biodegradable poly(L-lactic acid) (PLLA) microfibers were prepared by electrospinning by varying the applied potential, solution flow rate and collector conditions. PLLA fibers with smoothly oriented and random morphologies were obtained and characterized by scanning electron microscopy. The optimum fiber orientation was obtained at 1000 rpm using a 20.3 cm diameter collecting drum, while for higher and lower drum rotation speeds, the rapid random motion of the jets resulted in a random fiber distribution. The deformation of the jet with rapid solidification during electrospinning often results in a metastable phase. PLLA electrospun fibers are amorphous but contain numerous crystal nuclei that rapidly grow when the sample is heated to 70–140 °C. In this way, the degree of crystallinity of the fibers can be tailored between 0 and 50% by annealing. Infrared transmission spectra revealed that the processing conditions do not affect the PLLA samples at the molecular level and that the crystallinity of the samples is related to the presence of α-crystals.
机译:通过电纺丝,通过改变施加的电势,溶液流速和收集器条件,可制备可生物降解的聚(L-乳酸)(PLLA)超细纤维。获得具有平滑取向和随机形态的PLLA纤维,并通过扫描电子显微镜表征。最佳的纤维取向是使用直径为20.3厘米的收集鼓以1000 rpm的速度获得的,而对于更高和更低的鼓旋转速度,喷嘴的快速随机运动会导致纤维的随机分布。在静电纺丝过程中,快速固化的射流变形通常会导致亚稳态。 PLLA电纺纤维是非晶态的,但包含许多晶核,当样品加热到70–140°C时,晶核会快速生长。以这种方式,可以通过退火将纤维的结晶度调整为0至50%。红外透射光谱表明,加工条件在分子水平上不影响PLLA样品,并且样品的结晶度与α晶体的存在有关。

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