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Conducting polyaniline composites as microwave absorbers

机译:导电聚苯胺复合材料作为微波吸收剂

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Conducting polymers are excellent microwave absorbers and they show technological advantage when compared with inorganic electromagnetic absorbing materials, being light weight, easily processable, and the ability of changing the electromagnetic properties with nature and amount of dopants, synthesis conditions, etc. In this paper we report the synthesis, dielectric properties, and expected application of conducting composites based on polyaniline (PAN). Cyclohexanone soluble conducting PAN composites of microwave conductivity 12.5 S/m was synthesized by the in situ polymerization of aniline in the presence of emulsion grade polyvinyl chloride. The dielectric properties of the composites, especially the dielectric loss, conductivity, dielectric heating coefficient, absorption coefficient, and penetration depth, were studied using a HP8510 vector network analyzer. The microwave absorption of the composites were studied at different frequency bands Le, S, C, and X bands (2-12 GHz). The absorption coefficient was found to be higher than 200 m(-1) and it can be used for making microwave absorbers in space applications.
机译:导电聚合物是优异的微波吸收剂,与无机电磁吸收材料相比,它们显示出技术优势,重量轻,易于加工,并且具有随掺杂剂的性质和数量,合成条件等改变电磁性能的能力。报告了基于聚苯胺(PAN)的导电复合材料的合成,介电性能和预期应用。在乳液级聚氯乙烯存在下,通过苯胺的原位聚合反应,合成了微波电导率为12.5 S / m的环己酮可溶性导电PAN复合材料。使用HP8510矢量网络分析仪研究了复合材料的介电性能,特别是介电损耗,电导率,介电加热系数,吸收系数和穿透深度。研究了复合材料在Le,S,C和X不同频段(2-12 GHz)的微波吸收。发现吸收系数高于200 m(-1),可用于制造太空应用中的微波吸收器。

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