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Effective Formation of Well-Defined Polymeric Microfibers and Nanofibers with Exceptional Uniformity by Simple Mechanical Needle Spinning

机译:通过简单的机械针纺有效地形成定义良好的聚合物超细纤维和具有均匀性的纳米纤维

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摘要

The fabrication of nanofibers with a mechanical force has attracted increasing attention owing to its facile and easy fabrication. Herein, we demonstrate a novel and facile fabrication technique with the mechanical force, needle spinning, which utilizes a needle tip to draw a polymer solution to form fibrous structures. We studied the effect of the processing parameters to the nanofiber structure, namely, the pulling away speed, pulling away distances, needle size, and polymer concentration, which were systemically controlled. As the needle spinning provides an effective route to adjust those parameters, highly uniform nanofibers can be achieved. There are clear tendencies in the diameter; it was increased as the polymer concentration and needle size were increased, and was decreased as the pulling away distance and pulling away speed were increased. Needle spinning with a precise control of the processing parameter enables us to readily fabricate well-defined nanofibers, with controlled dimensions in diameter and length; plus, single nanofibers also can be easily formed. Those features cannot be realized in common spinning process such as electrospinning. Therefore, this technique will lead to further development of the use of mechanical force for nanofiber fabrication and will expand the range of nanofibers applications.
机译:具有机械力的纳米纤维的制造由于其容易且容易制造而引起了越来越多的关注。在这里,我们展示了一种新颖而又简便的制造技术,即机械力,即针纺,它利用针尖吸取聚合物溶液以形成纤维状结构。我们研究了加工参数对纳米纤维结构的影响,即系统控制的拉开速度,拉开距离,针头大小和聚合物浓度。由于针纺提供了调整这些参数的有效途径,因此可以实现高度均匀的纳米纤维。直径有明显的趋势。随聚合物浓度和针头尺寸的增加而增加,而随着拉开距离和拉开速度的增加而减小。通过对纺丝工艺参数的精确控制,我们可以轻松制造出轮廓分明的纳米纤维,并控制直径和长度。另外,单根纳米纤维也很容易形成。这些特征不能在诸如电纺丝的普通纺丝工艺中实现。因此,该技术将导致在纳米纤维制造中使用机械力的进一步发展,并将扩大纳米纤维的应用范围。

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