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Size-Controllable Melt-Electrospun Polycaprolactone (PCL) Fibers with a Sodium Chloride Additive

机译:具有氯化钠添加剂的尺寸可控的熔体电纺聚己内酯(PCL)纤维

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摘要

Melt-electrospun polycaprolactone (PCL) fibers were fabricated by using NaCl as an additive. The size and morphology of the PCL fibers could be controlled by varying the concentration of the additive. The smallest size of the fibers (2.67 ± 0.57) µm was found in the sample with 8 wt% NaCl, which was an order of magnitude smaller than the PCL fibers without the additive. The melt-electrospun fibers were characterized using the differential scanning calorimeter (DSC), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR) techniques. Interestingly, a trace of NaCl was not found in any melt-electrospun fiber. The remaining PCL after melt-electrospinning was evaporated by annealing, and the NaCl residual was found in the glass syringe. The result confirmed that the NaCl additive was not ejected from the glass syringe in the melt-electrospinning process. Instead, the NaCl additive changed the viscosity and the polarization of the molten polymer. Two parameters are crucial in determining the size and morphology of the electrospun fibers. The higher NaCl concentration could lead to higher polarization of the polymer melt and thus a stronger electrostatic force, but it could also result in an exceedingly high viscosity for melt-electrospinning. In addition, the absence of NaCl in the melt-electrospun PCL fibers is advantageous. The fibers need not be cleaned to remove additives and can be directly exploited in applications, such as tissue engineering or wound dressing.
机译:熔融静电纺聚己内酯(PCL)纤维是用氯化钠作为添加剂制备的。 PCL纤维的尺寸和形态可以通过改变添加剂的浓度来控制。在含有8 wt%NaCl的样品中,发现纤维的最小尺寸(2.67±0.57)µm,这比不含添加剂的PCL纤维小一个数量级。使用差示扫描量热仪(DSC),X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)技术对熔体静电纺丝纤维进行了表征。有趣的是,在任何熔融电纺丝纤维中都没有发现氯化钠的痕迹。通过退火将熔融电纺丝后残留的PCL蒸发,在玻璃注射器中发现NaCl残留。结果证实在熔融电纺丝过程中没有从玻璃注射器中喷射出NaCl添加剂。相反,NaCl添加剂改变了熔融聚合物的粘度和极化。两个参数对于确定电纺纤维的尺寸和形态至关重要。较高的NaCl浓度可导致聚合物熔体的极化更高,从而产生更强的静电力,但它也可能导致熔体静电纺丝的粘度极高。另外,在熔融电纺PCL纤维中不存在NaCl是有利的。纤维无需清洗即可去除添加剂,可以直接用于组织工程或伤口敷料等应用中。

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