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导电核壳结构聚丙烯腈-聚吡咯纳米纤维的合成与表征

Synthesis and characterization of conductive core-shell polyacrylonitrile-polypyrrole nanofibers.

作者信息

Jun Tae-Sun, Nguyen Tuan-Anh, Jung Yongju, Kim Yong Shin

机构信息

Graduate School of Bionano Technology, Hanyang University, Ansan 426-791, South Korea.

出版信息

J Nanosci Nanotechnol. 2012 Jul;12(7):5967-71. doi: 10.1166/jnn.2012.6292.

Abstract

Nonwoven polyacrylonitrile-polypyrrole (PAN-PPy) core-shell nanofiber mats were prepared through the growth of PPy layers on electrospun PAN nanofibers via a two-step vapor-phase polymerization, i.e., the wet-coating of ferric tosylate (FeTos) oxidants on PAN nanofibers followed by exposure to pyrrole monomers in the gas phase. Under the conditions ([FeTos] = 10 wt%, reaction time = 15 min, temperature = 15 degrees C), the PPy polymerization procedure led to both a uniform coating over the PAN surface with an average thickness of 18 nm and cross-linkages among the nanofibers without a noticeable change in the highly porous nanofibrous structures. The oxidant concentration and polymerization time were found to be key parameters for achieving a good nanostructured core-shell fiber mat. FT-IR, XPS, XRD and conductivity measurements confirmed the synthesis of Tos-doped PPy with some degree of crystallinity and a high conductivity.

摘要

通过两步气相聚合反应,即在静电纺聚丙烯腈(PAN)纳米纤维上湿法涂覆对甲苯磺酸铁(FeTos)氧化剂,随后使其暴露于气相中的吡咯单体,在PAN纳米纤维上生长聚吡咯(PPy)层,制备了非织造聚丙烯腈-聚吡咯(PAN-PPy)核壳纳米纤维毡。在[FeTos] = 10 wt%、反应时间 = 15分钟、温度 = 15摄氏度的条件下,PPy聚合过程使得PAN表面形成均匀涂层,平均厚度为18纳米,并且纳米纤维之间形成交联,同时高度多孔的纳米纤维结构没有明显变化。发现氧化剂浓度和聚合时间是获得良好纳米结构核壳纤维毡的关键参数。傅里叶变换红外光谱(FT-IR)、X射线光电子能谱(XPS)、X射线衍射(XRD)和电导率测量证实了合成出具有一定结晶度和高电导率的对甲苯磺酸掺杂PPy。

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