Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging

Complex permittivity of conducting polypyrrole (PPy)-coated Nylon-Lycra textiles is measured using a free space transmission measurement technique over the frequency range of 1–18 GHz. The aging of microwave dielectric properties and reflection, transmission and absorption for a period of 18 months...

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Main Authors: Eva Hakansson, Akif Kaynak, Abbas Kouzani
Format: Article
Language:English
Published: MDPI AG 2016-07-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/9/7/609
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spelling doaj-437a9ee24a0747d6b4d0d169b13ff3d92020-11-24T21:44:25ZengMDPI AGMaterials1996-19442016-07-019760910.3390/ma9070609ma9070609Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during AgingEva Hakansson0Akif Kaynak1Abbas Kouzani2School of Engineering, Deakin University, Geelong, VIC 3216, AustraliaSchool of Engineering, Deakin University, Geelong, VIC 3216, AustraliaSchool of Engineering, Deakin University, Geelong, VIC 3216, AustraliaComplex permittivity of conducting polypyrrole (PPy)-coated Nylon-Lycra textiles is measured using a free space transmission measurement technique over the frequency range of 1–18 GHz. The aging of microwave dielectric properties and reflection, transmission and absorption for a period of 18 months is demonstrated. PPy-coated fabrics are shown to be lossy over the full frequency range. The levels of absorption are shown to be higher than reflection in the tested samples. This is attributed to the relatively high resistivity of the PPy-coated fabrics. Both the dopant concentration and polymerisation time affect the total shielding effectiveness and microwave aging behaviour. Distinguishing either of these two factors as being exclusively the dominant mechanism of shielding effectiveness is shown to be difficult. It is observed that the PPy-coated Nylon-Lycra samples with a p-toluene sulfonic acid (pTSA) concentration of 0.015 M and polymerisation times of 60 min and 180 min have 37% and 26% decrease in total transmission loss, respectively, upon aging for 72 weeks at room temperature (20 °C, 65% Relative humidity (RH)). The concentration of the dopant also influences the microwave aging behaviour of the PPy-coated fabrics. The samples with a higher dopant concentration of 0.027 mol/L pTSA are shown to have a transmission loss of 32.6% and 16.5% for short and long polymerisation times, respectively, when aged for 72 weeks. The microwave properties exhibit better stability with high dopant concentration and/or longer polymerization times. High pTSA dopant concentrations and/or longer polymerisation times result in high microwave insertion loss and are more effective in reducing the transmission and also increasing the longevity of the electrical properties.http://www.mdpi.com/1996-1944/9/7/609microwavedielectric constantaging
collection DOAJ
language English
format Article
sources DOAJ
author Eva Hakansson
Akif Kaynak
Abbas Kouzani
spellingShingle Eva Hakansson
Akif Kaynak
Abbas Kouzani
Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
Materials
microwave
dielectric constant
aging
author_facet Eva Hakansson
Akif Kaynak
Abbas Kouzani
author_sort Eva Hakansson
title Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
title_short Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
title_full Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
title_fullStr Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
title_full_unstemmed Change in Dielectric Properties in the Microwave Frequency Region of Polypyrrole–Coated Textiles during Aging
title_sort change in dielectric properties in the microwave frequency region of polypyrrole–coated textiles during aging
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2016-07-01
description Complex permittivity of conducting polypyrrole (PPy)-coated Nylon-Lycra textiles is measured using a free space transmission measurement technique over the frequency range of 1–18 GHz. The aging of microwave dielectric properties and reflection, transmission and absorption for a period of 18 months is demonstrated. PPy-coated fabrics are shown to be lossy over the full frequency range. The levels of absorption are shown to be higher than reflection in the tested samples. This is attributed to the relatively high resistivity of the PPy-coated fabrics. Both the dopant concentration and polymerisation time affect the total shielding effectiveness and microwave aging behaviour. Distinguishing either of these two factors as being exclusively the dominant mechanism of shielding effectiveness is shown to be difficult. It is observed that the PPy-coated Nylon-Lycra samples with a p-toluene sulfonic acid (pTSA) concentration of 0.015 M and polymerisation times of 60 min and 180 min have 37% and 26% decrease in total transmission loss, respectively, upon aging for 72 weeks at room temperature (20 °C, 65% Relative humidity (RH)). The concentration of the dopant also influences the microwave aging behaviour of the PPy-coated fabrics. The samples with a higher dopant concentration of 0.027 mol/L pTSA are shown to have a transmission loss of 32.6% and 16.5% for short and long polymerisation times, respectively, when aged for 72 weeks. The microwave properties exhibit better stability with high dopant concentration and/or longer polymerization times. High pTSA dopant concentrations and/or longer polymerisation times result in high microwave insertion loss and are more effective in reducing the transmission and also increasing the longevity of the electrical properties.
topic microwave
dielectric constant
aging
url http://www.mdpi.com/1996-1944/9/7/609
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