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Rapid fabrication of poly(epsilon-caprolactone) nanofibers using needleless alternating current electrospinning

机译:使用无针交流电纺丝技术快速制备聚ε-己内酯纳米纤维

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摘要

Poly(epsilon-caprolactone) (PCL) biopolymer nanofibers and micro-fibers have been fabricated for the first time at the rates up to 14.0 g per hour using a needleless and collectorless alternating current electrospinning technique. By combining the ac-voltage, "green" low toxicity glacial acetic acid (AA) as the solvent and sodium acetate (NaAc) as an additive, beadless PCL fibers with diameters tunable from 150 nm to 2000 nm, varying surface morphology and degree of self-bundling are obtained. In this new approach, the addition of NaAc plays a crucial role in improving the spinnability of PCL solution and fiber morphology. NaAc reveals the concentration-dependent effect on charge transfer and rheological properties of the PCL/AA precursor, which results in broader ranges of spinnable PCL concentrations and ac-voltages suitable for rapid manufacturing of PCL-based fibers. (c) 2015 Wiley Periodicals, Inc.
机译:聚(ε-己内酯)(PCL)生物聚合物纳米纤维和微纤维已首次使用无针无集电极交流电纺丝技术以每小时14.0 g的速度制备。通过将交流电压,“绿色”低毒性冰醋酸(AA)作为溶剂和乙酸钠(NaAc)作为添加剂相结合,可形成直径从150 nm至2000 nm可调的无珠PCL纤维,改变了表面形态和程度。获得自捆扎。在这种新方法中,添加NaAc在改善PCL溶液的可纺性和纤维形态方面起着至关重要的作用。 NaAc揭示了浓度依赖性效应对PCL / AA前体的电荷转移和流变性的影响,从而导致可纺PCL浓度和交流电压的范围更广,适用于快速制造基于PCL的纤维。 (c)2015年威利期刊有限公司

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