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Transparent Conductive Films Fabricated from Polythiophene Nanofibers Composited with Conventional Polymers

机译:由聚噻吩纳米纤维与常规聚合物复合制成的透明导电膜

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摘要

Transparent, conductive films were prepared by compositing poly(3-hexylthiophene) (P3HT) nanofibers with poly(methyl methacrylate) (PMMA). The transparency, conductivity, atmospheric stability, and mechanical strength of the resulting nanofiber composite films when doped with AuCl3 were evaluated and compared with those of P3HT nanofiber mats. The conductivity of the nanofiber composite films was 4.1 S∙cm−1, which is about seven times less than that which was previously reported for a nanofiber mat with the same optical transmittance (~80%) reported by Aronggaowa et al. The time dependence of the transmittance, however, showed that the doping state of the nanofiber composite films in air was more stable than that of the nanofiber mats. The fracture stress of the nanofiber composite film was determined to be 12.3 MPa at 3.8% strain.
机译:通过将聚(3-己基噻吩)(P3HT)纳米纤维与聚(甲基丙烯酸甲酯)(PMMA)混合,可以制备透明的导电膜。评价了掺入AuCl 3 的纳米纤维复合薄膜的透明性,导电性,大气稳定性和机械强度,并与P3HT纳米纤维毡进行了比较。纳米纤维复合薄膜的电导率为4.1 S∙cm -1 ,约为先前报道的具有相同透光率(〜80%)的纳米纤维垫的电导率的7倍。 Aronggaowa等。然而,透射率的时间依赖性表明,纳米纤维复合膜在空气中的掺杂状态比纳米纤维毡的掺杂状态更稳定。在3.8%应变下,纳米纤维复合膜的断裂应力确定为12.3MPa。

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