纺织学报 ›› 2014, Vol. 35 ›› Issue (9): 1-0.

• 纤维材料 •    下一篇

静电纺锡/聚丙烯腈纳米纤维膜制备及表征

  

  • 收稿日期:2013-07-24 修回日期:2014-04-15 出版日期:2014-09-15 发布日期:2014-09-16
  • 通讯作者: 胡毅 E-mail:huyi-v@zstu.edu.cn
  • 基金资助:

    浙江省自然科学基金;浙江省纺织印染节能减排产业技术创新战略联盟项目

Preparation and characterization of electrospun Sn/PAN nanofibers

  • Received:2013-07-24 Revised:2014-04-15 Online:2014-09-15 Published:2014-09-16

摘要: 将纳米锡(Sn)与聚丙烯腈(PAN)共混,采用静电纺丝法制备Sn/PAN纳米纤维膜并进行碳化处理。使用扫描电子显微镜、透射电子显微镜和X射线衍射法对纤维平均直径、直径分布、Sn在纤维上的存在情况和Sn加入到PAN进行静电纺丝后的结晶程度进行表征,将碳化后的纤维膜直接制成锂离子电池负极,进行电化学性能测试。结果表明,随着纺丝电压升高或固化距离增大,纤维直径减小;当静电纺丝电压为14kV,固化距离为14cm时,纤维平均直径较小,分布最均匀;碳化后纤维变细;Sn加入到PAN进行静电纺丝后发生团聚,结晶程度明显下降;Sn/PAN作为锂离子电池负极材料,具有良好的储能性能。

Abstract: Blending the nano-tin (Sn) and polyacrylonitrile (PAN) to prepare Sn/PAN nanofibers by electrospinning. And using a scanning electron microscope and X-ray diffraction method, characterize the average diameter of fiber, distribution of diameter, distribution of Sn in the fiber and the degree of crystallinity after Sn electrospinning. The results showed that the degree of crystallinity increased after PAN electrospinning; the fiber diameter decreases with the spinning voltage increases or the distance increases; when the electrostatic spinning voltage is 14kV, solidification distance is 14cm, the average diameter of fiber is small and the distribution is uniform; Sn reunions when added to the PAN electrospinning, degree of crystallinity decreased; with the PAN stretched in the electrostatic field, lattice of Sn distorted. After electrostatic spinning, the XRD diffraction peaks of Sn slightly offset than the standard peaks.

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