Electrophysical properties of composites based on the epoxy resin and expanded graphite

The composites of epoxy resin-expanded graphite(EG)-vermiculite and epoxy resin-expanded graphite-perlite were obtained and their electrophysical properties were analysed at low frequencies and in the microwave range. High values (> 30) of real and imaginary components of the complex permittivi...

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Main Authors: O. G. Sirenko, S. M. Makhno, O. M. Lisova, G. M. Gunya, P. P. Gorbyk
Format: Article
Language:English
Published: Chuiko Institute of Surface Chemistry of NAS of Ukraine 2018-11-01
Series:Хімія, фізика та технологія поверхні
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Online Access:https://cpts.com.ua/index.php/cpts/article/view/488
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author O. G. Sirenko
S. M. Makhno
O. M. Lisova
G. M. Gunya
P. P. Gorbyk
author_facet O. G. Sirenko
S. M. Makhno
O. M. Lisova
G. M. Gunya
P. P. Gorbyk
author_sort O. G. Sirenko
collection DOAJ
description The composites of epoxy resin-expanded graphite(EG)-vermiculite and epoxy resin-expanded graphite-perlite were obtained and their electrophysical properties were analysed at low frequencies and in the microwave range. High values (> 30) of real and imaginary components of the complex permittivity for both systems were achieved with a content of EG of less than 2 wt. %. The values of the percolation threshold and critical index of systems were defined: for a system with vermiculite the percolation transition (?c = 0.0018); and for a system with perlite (?c =0.0039). The method of impedance spectroscopy (10-2–106 Hz) shows that for all investigated composites there is no dependence of electrical conductivity to frequency, but up to a value of 103 Hz, indicating a low level of ionic conductivity. It was found that the difference in electrophysical characteristics of two systems with the same content of the expanded graphite arises due to the nature of the surface of the dielectric components. The best indicators, namely, the lower percolation threshold and the achievement of maximum electrical conductivity values at lower EG, are in the system with vermiculite. It is due to the hydrophobic properties of the surface the filler particles, as well as the effect of the flow of a dielectric particle of vermiculite by a suspension of an epoxy resin-EG, while the particles perlite is impregnated with it. Changing the content of such dielectric ingredients allows us to expand the functionality of composites when used for shielding from electromagnetic fields.
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spelling doaj-art-a533307564c84a7c9eba1d71ca28dea12025-08-20T03:08:17ZengChuiko Institute of Surface Chemistry of NAS of UkraineХімія, фізика та технологія поверхні2079-17042518-12382018-11-019410.15407/hftp09.04.442Electrophysical properties of composites based on the epoxy resin and expanded graphiteO. G. Sirenko0S. M. Makhno1O. M. Lisova2G. M. Gunya3P. P. Gorbyk4Chuiko Institute of Surface Chemistry of National Academy of Sciences of UkraineChuiko Institute of Surface Chemistry of National Academy of Sciences of UkraineChuiko Institute of Surface Chemistry of National Academy of Sciences of UkraineChuiko Institute of Surface Chemistry of National Academy of Sciences of UkraineChuiko Institute of Surface Chemistry of National Academy of Sciences of Ukraine The composites of epoxy resin-expanded graphite(EG)-vermiculite and epoxy resin-expanded graphite-perlite were obtained and their electrophysical properties were analysed at low frequencies and in the microwave range. High values (> 30) of real and imaginary components of the complex permittivity for both systems were achieved with a content of EG of less than 2 wt. %. The values of the percolation threshold and critical index of systems were defined: for a system with vermiculite the percolation transition (?c = 0.0018); and for a system with perlite (?c =0.0039). The method of impedance spectroscopy (10-2–106 Hz) shows that for all investigated composites there is no dependence of electrical conductivity to frequency, but up to a value of 103 Hz, indicating a low level of ionic conductivity. It was found that the difference in electrophysical characteristics of two systems with the same content of the expanded graphite arises due to the nature of the surface of the dielectric components. The best indicators, namely, the lower percolation threshold and the achievement of maximum electrical conductivity values at lower EG, are in the system with vermiculite. It is due to the hydrophobic properties of the surface the filler particles, as well as the effect of the flow of a dielectric particle of vermiculite by a suspension of an epoxy resin-EG, while the particles perlite is impregnated with it. Changing the content of such dielectric ingredients allows us to expand the functionality of composites when used for shielding from electromagnetic fields. https://cpts.com.ua/index.php/cpts/article/view/488conductive compositespercolation thresholdexpanded graphitemicrowave range
spellingShingle O. G. Sirenko
S. M. Makhno
O. M. Lisova
G. M. Gunya
P. P. Gorbyk
Electrophysical properties of composites based on the epoxy resin and expanded graphite
Хімія, фізика та технологія поверхні
conductive composites
percolation threshold
expanded graphite
microwave range
title Electrophysical properties of composites based on the epoxy resin and expanded graphite
title_full Electrophysical properties of composites based on the epoxy resin and expanded graphite
title_fullStr Electrophysical properties of composites based on the epoxy resin and expanded graphite
title_full_unstemmed Electrophysical properties of composites based on the epoxy resin and expanded graphite
title_short Electrophysical properties of composites based on the epoxy resin and expanded graphite
title_sort electrophysical properties of composites based on the epoxy resin and expanded graphite
topic conductive composites
percolation threshold
expanded graphite
microwave range
url https://cpts.com.ua/index.php/cpts/article/view/488
work_keys_str_mv AT ogsirenko electrophysicalpropertiesofcompositesbasedontheepoxyresinandexpandedgraphite
AT smmakhno electrophysicalpropertiesofcompositesbasedontheepoxyresinandexpandedgraphite
AT omlisova electrophysicalpropertiesofcompositesbasedontheepoxyresinandexpandedgraphite
AT gmgunya electrophysicalpropertiesofcompositesbasedontheepoxyresinandexpandedgraphite
AT ppgorbyk electrophysicalpropertiesofcompositesbasedontheepoxyresinandexpandedgraphite