聚苯胺基环氧微复合材料的电学性能

C. Vanga-Bouanga, M. Frechette, É. David
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引用次数: 1

摘要

本文以环氧树脂和聚苯胺为原料,在盐酸介质中,以过氧二硫酸铵为氧化剂,通过化学氧化聚合法制备了苯胺复合材料。采用苯胺- hcl的比例分别为1、5、10 wt%,聚苯胺- hcl包覆环氧树脂微粒的粉末制备了本体聚合物复合材料。在室温下对复合材料的交流电导率进行了测试,结果表明聚苯胺的存在使复合材料的电导率提高。通过显示电导率随苯胺- hcl含量在50 Hz左右的变化,可以看到电导率随苯胺含量的增加而增加,从低至1 wt%开始。在50 Hz下,纯环氧树脂的交流电导率为10-13 S/cm,苯胺- hcl含量为1 wt%的复合材料的交流电导率为10-10 S/cm。FTIR分析显示环氧-聚苯胺复合材料的吸收峰没有明显变化。TGA分析表明,含聚苯胺的样品在较低温度下开始降解。
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Electrical properties of polyaniline-based epoxy microcomposite
In this report, the composites are based on epoxy resin and PAni which was synthesized in-situ by chemical oxidative polymerisation of aniline with ammonium peroxydisulfate as oxidant in hydrochloric acid medium. The bulk polymer composites were made from a powder consisting of the epoxy micro-particles surrounded by the PAni (core-shell structure) with different percentage 1, 5 and 10 wt% of aniline-HCl. The AC electrical conductivity of these composites measured at room temperature showed that the presence of PAni in the epoxy matrix leads to an increase of its conductivity. By displaying the variation of conductivity as a function of the aniline-HCl content in the epoxy matrix at around 50 Hz, it was seen that the electrical conductivity increases with the percentage of aniline starting from as low as 1 wt%. The value of the AC conductivity at 50 Hz varies from 10-13 S/cm for pure epoxy to 10-10 S/cm for the composite with 1 wt% of aniline-HCl. FTIR analysis did not show any significant changes in the absorption peaks of composite epoxy-PAni. TGA analysis showed that sample with PAni starts to degrade at a lower temperature.
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