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Dielectric characterization of conducting textiles using free space transmission measurements: Accuracy and methods for improvement
Authors:Eva Hå  kansson,Andrew Amiet,Akif Kaynak
Affiliation:1. Center for Materials and Fibre Innovation, Geelong Technology Precinct, Deakin University, Geelong, Victoria 3217, Australia;2. Defence Science and Technology Organisation, Maritime Platforms Division, P.O. Box 4331, Melbourne, Victoria 3001, Australia;3. School of Engineering and Information Technology, Deakin University, Geelong, Victoria 3217, Australia
Abstract:
The dielectric behaviour of in-situ polymerized thin polypyrrole (PPy) films on synthetic textile substrates were obtained in the 1–18 GHz region using free space transmission and reflection methods. The PPy/para-toluene-2-sulphonic acid (pTSA) coated fabrics exhibited an absorption dominated total shielding effectiveness (SE) of up to −7.34 dB, which corresponds to more than 80% of incident radiation. The permittivity response is significantly influenced by the changes in ambient conditions, sample size and diffraction around the sample. Mathematical diffraction removal, time-gating tools and high gain horns were utilized to improve the permittivity response. A narrow time-gate of 0.15 ns produced accurate response for frequencies above 6.7 GHz and the high gain horns further improved the response in the 7.5–18 GHz range. Errors between calculated and measured values of reflection were most commonly within 2%, indicating good accuracy of the method.
Keywords:Polypyrrole   Thin films   Electromagnetic interference shielding   Permittivity   Free space method
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