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Fabrication and morphology study of electrospun cellulose acetate/polyethylenimine nanofiber

机译:静电纺丝醋酸纤维素/聚乙烯亚胺纳米纤维的制备与形貌研究

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Cellulose acetate (CA) and polyethylenimine (PEI) composite nanofibers were developed via the electrospinning technique. The influence of PEI concentration on the size and morphology of composite fibers was observed by SEM. The secondary fibers produced along with the primary fibers, upon the addition of PEI component. This was named as "bimodal" size distribution. To remove the remaining PEI, the as-spun membranes were immersed in deionized water. The results showed that the existence of PEI in the water-treated process promoted the swelling of fibers. When PEI content was lower, the compatibility of CA and PEI blends was enhanced by the interaction of the polar group between the NH group in PEI and the OH group in CA. The hollow structure of the composite fibers could be observed after water treating, because of the dissolution of PEI inside the fibers. With the increase of PEI content, the side polar groups showed the enhanced repulsion under the effect of the electrical force, which led to PEI diffusing outwardly to the composite fiber surface.
机译:醋酸纤维素(CA)和聚乙烯亚胺(PEI)复合纳米纤维是通过静电纺丝技术开发的。 SEM观察了PEI浓度对复合纤维尺寸和形貌的影响。在添加PEI组分后,次级纤维与初级纤维一起产生。这被称为“双峰”尺寸分布。为了除去残留的PEI,将初纺的膜浸入去离子水中。结果表明,水处理过程中PEI的存在促进了纤维的溶胀。当PEI含量较低时,通过PEI中的NH基团和CA中的OH基团之间的极性基团的相互作用增强了CA和PEI共混物的相容性。复合材料的中空结构可以在水处理后观察到,因为PEI溶解在纤维中。随着PEI含量的增加,侧极性基团在电力的作用下显示出增强的排斥力,从而导致PEI向外扩散至复合纤维表面。

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