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Electric and electromagnetic shielding properties of highly conducting polyaniline films

机译:电气和电磁屏蔽性能高导电聚苯胺薄膜

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The increasing use of commercial, military, and scientific electrical products and electronic devices has raised the problem of electromagnetic interference (EMI), also called electromagnetic environmental pollution, so there is an increased interest in EMI shielding. By use of mechanical mixing dopimg method, highly conducting polyaniline (PANI) films were prepared by the variation of dopant (camphor sulphonic acid) loading and solvent types in this paper. When dopant/emeradine base repeat unit molar ratio is 0.5/1, the conductivity of doped PANI is maximum. The conductivity results show that using m-cresol as solvent is better than N-methyl-2-pyrrolidinone (NMP). Using such mechanical mixing doping method is better than other doping methods. It employs less solvent and less dopant. The maximum conductivity of the prepared films is up to 370 S/cm. Total shielding efficiency (SE{sub}T) of highly conducting polyaniline films was measured at 10 GHz of microwave frequency. Their dependence of SET on thickness of polyaniline films was studied. Shielding efficiencies (SET) of PANI films were also measured in shielding room according to MIL-STD-285 standard in a different frequency. When the thickness of the film is 45 m, the measured SET is more than 40 dB. The SET result shows that the electromagnetic shielding property of highly conducting PANI film can meet the desire of commercial standard. Electromagnetic shielding efficiencies of different thickness films are calculated by far-field shielding theory. The practical measured SET values are compared with the calculated values. It is found that the measured SET values are very consistent with the theoretical calculated ones.
机译:商业,军事和科学电气产品和电子设备的使用越来越多地提出了电磁干扰(EMI)的问题,也称为电磁环境污染,因此对EMI屏蔽的兴趣增加。通过使用机械混合多胶种方法,通过本文中的掺杂剂(樟孔磺酸)负载和溶剂类型的变化来制备高导电的聚苯胺(PANI)膜。当掺杂剂/偏振碱重复单元摩尔比为0.5 / 1时,掺杂PANI的导电性最大。电导率结果表明,使用M-甲酚作为溶剂优于N-甲基-2-吡咯烷酮(NMP)。使用这种机械混合掺杂方法优于其他掺杂方法。它采用较少的溶剂和更少的掺杂剂。制备的薄膜的最大导电性高达370s / cm。在10GHz的微波频率下测量高导电的聚苯胺膜的总屏蔽效率(SE {SUB} T)。研究了它们对聚苯胺薄膜厚度的依赖性。在不同频率的MIL-STD-285标准的屏蔽室中还测量了PANI薄膜的屏蔽效率(SET)。当薄膜的厚度为45μm时,测量的组大于40 dB。该集合结果表明,高导电的PANI膜的电磁屏蔽性能可以满足商业标准的愿望。通过远场屏蔽理论计算不同厚度膜的电磁屏蔽效率。将实际测量的设定值与计算值进行比较。发现测量的设定值与理论计算值非常一致。

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