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Several fabrication techniques and characterization of the thus obtained epoxy/polyaniline composite films

机译:由此获得的环氧树脂/聚苯胺复合膜的几种制造技术和表征

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Epoxy/PAni composite films were prepared with 1 and 5 wt% of various additives: PAni powder only, epoxy powder surrounded by PAni (epoxy-PAni) and PAni powder surrounded by epoxy (PAni-epoxy). Results of dielectric relaxation spectroscopy showed that with 1 wt% of filler content in epoxy resin, irrespective of the type of additives, the value of AC-conductivity was increased by at least one order of magnitude compared to that of the neat epoxy. In the case of 5 wt% of filler content, the sample containing epoxy-PAni as filler exhibits the highest value (2.3×10-13 S/cm) of AC-conductivity when compared to the one containing PAni-epoxy filler (2.1×10-14 S/cm), both measured at 1 Hz. This is due to the fact that in case of PAni surrounding epoxy powder, `PAni-epoxy', there is a chemical reaction between the PAni and the amine groups present in the curing agent. This reaction changes the oxidation state of PAni compared to the case of epoxy-PAni filler where PAni core is protected by the epoxy shell.
机译:用1和5wt%的各种添加剂制备环氧树脂/胰腺复合薄膜:仅由Pani(环氧树脂粉)包围的环氧粉末和由环氧树脂(PANI-环氧树脂)包围的环氧粉末。介电弛豫光谱的结果显示,环氧树脂中的1wt%的填料含量,与添加剂的类型无关,与整齐的环氧树脂相比,AC导电率的值增加了至少一种数量级。在5wt%的填料含量的情况下,与含有Pani-ePOxy填料的一个相比,含有环氧树脂-PANI作为填料的样品表现出最高值(2.3×10-13 s / cm)的交流导率(2.1× 10-14 s / cm),均以1 hz测量。这是由于在围绕环氧粉末,“胰岛环氧树脂”的情况下,PANI与固化剂中存在的胺基之间存在化学反应。与环氧树脂填料的情况相比,该反应改变了PANI的氧化状态,其中PANI核心受环氧壳保护。

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