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One-pot photoinduced synthesis of conductive polythiophene-epoxy network films

机译:一锅法光诱导合成导电聚噻吩-环氧树脂网络薄膜

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摘要

In this paper, we describe a novel methodology for fabricating conductive epoxy-polythiophene network films by simultaneous photoinduced step-growth and cationic ring opening polymerization processes. For this purpose, formulations containing a bifunctional epoxy monomer, namely 1,6-hexanediol diglycidyl ether (HDGE) and different amount of thiophene ranged from 0 to 50 wt% in the presence of an iodonium salt, namely (4-methylphenyl)[4-(2-methylpropyl) phenyl]-iodonium, hexafluorophosphate were irradiated under UV light. In the process, while polythiophene was formed through electron transfer reaction between photochemically formed phenyliodinium radical cations followed by proton release and coupling reactions, cationic ring opening polymerization of HDGE initiated by the liberated protons resulted in the formation of epoxy network. Conductivity of the obtained films was evaluated by surface resistivity measurements by means of a standard two-point micro-contact method before and after iodine doping. It was found that iodine doping provided a significant improvement in the surface conductivity. This work conclusively provides a new approach for bonding conducting polymers with epoxy-based network films via photoinduced electron transfer reactions in a simple, fast, and efficient approach of importance in electronic and other applications.
机译:在本文中,我们描述了一种通过同时进行光诱导的逐步增长和阳离子开环聚合过程来制备导电性环氧-聚噻吩网络薄膜的新方法。为此,在碘鎓盐即(4-甲基苯基)存在的情况下,包含双功能环氧单体即1,6-己二醇二缩水甘油醚(HDGE)和不同量的噻吩的配方量为0至50 wt%在紫外光下照射-(2-甲基丙基)苯基]-碘鎓六氟磷酸盐。在该过程中,虽然聚噻吩是通过光化学形成的苯基碘鎓自由基阳离子之间的电子转移反应,然后进行质子释放和偶联反应而形成的,但由释放的质子引发的HDGE的阳离子开环聚合导致形成环氧网络。在碘掺杂之前和之后,通过标准的两点微接触法通过表面电阻率测量来评估所获得的膜的电导率。发现碘掺杂提供了表面电导率的显着改善。这项工作最终为在电子和其他应用中具有重要意义的简单,快速和有效的方法,提供了一种通过光致电子转移反应将导电聚合物与环氧基网络薄膜粘合的新方法。

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