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Phase morphology control in electrospun nanofibers from the electrospinning of polymer blends.

机译:通过电纺聚合物共混物来控制电纺纳米纤维的相形态。

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摘要

Electrospinning of polymer blends offer the potential to prepare functional nanofibers for use in a variety of applications. The ability to control the phase morphology to obtain the nanofibers with special structures has received relatively little investigation. This research focuses on phase morphology control of electrospun nanofibers from the electrospinning of polymer blends. The first study investigated the internal morphology of nanofibers prepared by electrospinning polybutadiene (PB)/polycarbonate (PC) blends. Co-continuous and core-sheath structures were observed by TEM. The composition ratio, molecular weight, solution concentration and solvent type were changed to investigate how these factors affected the resulting phase morphology within the nanofiber. The phase morphology of nanofibers from PB/PC blends were found to depend not only on the composition ratio of the blends, but also on the molecular weight of individual polymer components. Decreasing molecular weight of either the polycarbonate or the polybutadiene is helpful to form core-sheath rather than co-continuous structures under the rapid solvent evaporation that occurs during the electrospinning process. The low viscosity of the blending system at high concentration before solidification is the prerequisite condition for the formation of core-sheath structures.; In the second study, core-sheath nanofibers with conductive polyaniline as the core and an insulating polymer as the sheath were prepared by electrospinning blends of polyaniline with either polystyrene or polycarbonate. When polyaniline was blended with polymethyl methacrylate and polyethyl oxide, only isolated domains of polyaniline in beadlike structures were formed. The beadlike structures are thought to result from the high surface tension of the solution. The low molecular weight of PANI was found to play a key role in the formation of core-sheath structures, as opposed to co-continuous morphologies.; The last part gives a detailed investigation of the effect of thermodynamic and kinetic factors on the formation of core-sheath structures in electrospun nanofibers. It was found that the formation of core-sheath structures depends on interaction of thermodynamic, kinetic and rheological factors. The incompatibility and large solubility parameter difference of two phases is helpful, but not sufficient for the formation of core-sheath structures. Kinetic factors, however, play a more important role in the development of the nanofiber morphology. During the electrospinning process, the rapid solvent evaporation requires systems with high molecular mobility. It was found that polymer blends with lower molecular weight tend to form core-sheath structures rather than co-continuous structure, as a result of their higher molecular mobility. Rheological factors also affect the internal phase morphology of nanofibers. It was observed the composition with higher viscosity was always located at the center and the composition with lower viscosity located outside.
机译:聚合物共混物的静电纺丝提供了制备用于各种应用的功能性纳米纤维的潜力。控制相形态以获得具有特殊结构的纳米纤维的能力已经进行了相对较少的研究。这项研究的重点是通过电纺聚合物共混物来控制电纺纳米纤维的相形态。第一项研究调查了通过电纺聚丁二烯(PB)/聚碳酸酯(PC)混合物制备的纳米纤维的内部形态。通过TEM观察到共连续结构和芯鞘结构。改变了组成比,分子量,溶液浓度和溶剂类型,以研究这些因素如何影响纳米纤维内所得的相形态。发现来自PB / PC共混物的纳米纤维的相形态不仅取决于共混物的组成比,而且还取决于单个聚合物组分的分子量。在静电纺丝过程中发生的快速溶剂蒸发下,降低聚碳酸酯或聚丁二烯的分子量有助于形成芯鞘结构,而不是共连续结构。固化前在高浓度下共混体系的低粘度是形成芯鞘结构的前提条件。在第二项研究中,通过将聚苯胺与聚苯乙烯或聚碳酸酯的共混物静电纺丝,制备了以导电聚苯胺为芯,绝缘聚合物为外皮的芯鞘纳米纤维。当将聚苯胺与聚甲基丙烯酸甲酯和聚环氧乙烷共混时,仅形成珠状结构中的分离的聚苯胺结构域。珠状结构被认为是由溶液的高表面张力产生的。与共连续形态相反,发现低分子量的PANI在芯鞘结构的形成中起关键作用。最后一部分详细研究了电纺纳米纤维中热力学和动力学因素对芯鞘结构形成的影响。已经发现,芯鞘结构的形成取决于热力学,动力学和流变学因素的相互作用。两相的不相容性和较大的溶解度参数差异是有帮助的,但不足以形成芯鞘结构。然而,动力学因素在纳米纤维形态的发展中起着更重要的作用。在静电纺丝过程中,快速的溶剂蒸发需要具有高分子迁移率的系统。发现具有较低分子量的聚合物共混物由于其较高的分子迁移率而倾向于形成核-鞘结构而不是共连续结构。流变因素也影响纳米纤维的内相形态。观察到,具有较高粘度的组合物总是位于中心,而具有较低粘度的组合物始终位于外部。

著录项

  • 作者

    Wei, Ming.;

  • 作者单位

    University of Massachusetts Lowell.;

  • 授予单位 University of Massachusetts Lowell.;
  • 学科 Plastics Technology.
  • 学位 D.Eng.
  • 年度 2005
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 整形外科学(修复外科学);
  • 关键词

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