电纺聚丙烯酸纳米纤维的溶剂优化

M. Geysoğlu, F. C. Çallıoğlu
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摘要

实验研究了不同溶剂(蒸馏水和乙醇)对电纺聚丙烯酸纳米纤维溶液性能、纺丝性能和纤维形态的影响。首先,用不同溶剂比的乙醇和蒸馏水在5 wt %的PAA浓度下制备聚合物溶液。然后,测定溶液的粘度、密度、pH、电导率和表面张力等性能。在最佳工艺参数(电压、电极间距、进给速率和大气条件)下,采用静电纺丝法制备了纳米纤维样品。最后,利用扫描电镜对纳米纤维表面进行形貌表征。结果表明,随着乙醇比的减小,溶液的电导率、表面张力和密度均增大。另一方面,pH值随着乙醇比例的增加而增加,因此溶液的酸性值降低。当乙醇/蒸馏水比为50/50时,粘度逐渐增大,随着乙醇含量的降低至50%以下,粘度逐渐减小。纤维平均直径随乙醇比的减小而减小。可以说,溶剂类型对溶液性能、纤维形态和纺丝性能有显著影响。一般情况下,电纺丝可以制备出细、均匀、无珠的纳米纤维,选择含有70%蒸馏水和30%乙醇的PAA溶液作为纤维形态、卷材质量和纺丝性能的最佳条件。
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SOLVENT OPTIMIZATION OF ELECTROSPUN POLY(ACRYLIC ACID) NANOFIBERS
In this study, it was investigated experimentally the influence of various solvents (distilled water and ethanol) on the solution properties, spinning performance, and fibre morphology of the electro spun Poly (acrylic acid) nanofibers. Firstly, polymer solutions were prepared at 5 wt % PAA with various solvent ratios of ethanol and distilled water. Then, solution properties such as viscosity, density, pH, conductivity, and surface tension were determined. The production of nanofiber samples was carried out by electrospinning under the optimum process parameters (voltage, distance between electrodes, feed rate, and atmospheric conditions). Finally, the morphological characterization of the nanofiber surface was carried out with SEM. According to the results, it was observed that conductivity, surface tension and the density of the solution increase as the ethanol ratio decreases. On the other hand, pH value increases as the ethanol ratio increases and, so, the acidic value of the solutions decreases. The viscosity increased until the ethanol/distilled water ratio was 50/50 and then decreased as the ethanol percentage decreased to under 50%. In addition, average fibre diameter decreases with ethanol ratio decreases. It is possible to say that solvent type affects solution properties, fibre morphology and spinning performance significantly. Generally, fine, uniform and bead free nanofibers could be electro spun and the PAA solution containing 70 wt % distilled water and 30 wt % ethanol was selected as the optimum in terms of fibre morphology, web quality and spinning performance.
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