Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites

The article explores the processes of charge transfer in the samples of polymeric composites based on poly(phenylene oxide) with fullerene and endometalfullerene in the electric field of low frequencies (f = 10−1Hz). The article identifies transfer processes connected with intramolecular and interm...

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Main Authors: Алексей Андреевич Кононов, Рене Алехандро Кастро Арата, Наталья Алексеевна Никонорова
Format: Article
Language:English
Published: Herzen State Pedagogical University of Russia 2020-06-01
Series:Physics of Complex Systems
Subjects:
Online Access:https://physcomsys.ru/index.php/physcomsys/article/view/2
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spelling doaj-4252fc3d8b054cc8b90068c3e1af33e92021-10-06T08:37:11ZengHerzen State Pedagogical University of RussiaPhysics of Complex Systems2687-153X2020-06-011210.33910/2687-153X-2020-1-2-52-55Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based compositesАлексей Андреевич Кононов0Рене Алехандро Кастро Арата1Наталья Алексеевна Никонорова2Herzen State Pedagogical University of RussiaHerzen State Pedagogical University of RussiaInstitute of Macromolecular Compounds of Russian Academy of Sciences The article explores the processes of charge transfer in the samples of polymeric composites based on poly(phenylene oxide) with fullerene and endometalfullerene in the electric field of low frequencies (f = 10−1Hz). The article identifies transfer processes connected with intramolecular and intermolecular conductivity. It is found that conductive channels are formed in a polymeric matrix at high concentrations of fullerene, thus, the type of conductivity changes from semiconductor to metallic. The embedding of iron into the fullerene frame molecule leads to the appearance of metallic conductivity of the composite in some temperature range. https://physcomsys.ru/index.php/physcomsys/article/view/2dielectric relaxationcharge transferpolymeric composites
collection DOAJ
language English
format Article
sources DOAJ
author Алексей Андреевич Кононов
Рене Алехандро Кастро Арата
Наталья Алексеевна Никонорова
spellingShingle Алексей Андреевич Кононов
Рене Алехандро Кастро Арата
Наталья Алексеевна Никонорова
Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
Physics of Complex Systems
dielectric relaxation
charge transfer
polymeric composites
author_facet Алексей Андреевич Кононов
Рене Алехандро Кастро Арата
Наталья Алексеевна Никонорова
author_sort Алексей Андреевич Кононов
title Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
title_short Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
title_full Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
title_fullStr Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
title_full_unstemmed Effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
title_sort effect of quasi-stationary electric field on charge transfer in poly(phenylene oxide) based composites
publisher Herzen State Pedagogical University of Russia
series Physics of Complex Systems
issn 2687-153X
publishDate 2020-06-01
description The article explores the processes of charge transfer in the samples of polymeric composites based on poly(phenylene oxide) with fullerene and endometalfullerene in the electric field of low frequencies (f = 10−1Hz). The article identifies transfer processes connected with intramolecular and intermolecular conductivity. It is found that conductive channels are formed in a polymeric matrix at high concentrations of fullerene, thus, the type of conductivity changes from semiconductor to metallic. The embedding of iron into the fullerene frame molecule leads to the appearance of metallic conductivity of the composite in some temperature range.
topic dielectric relaxation
charge transfer
polymeric composites
url https://physcomsys.ru/index.php/physcomsys/article/view/2
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AT natalʹâalekseevnanikonorova effectofquasistationaryelectricfieldonchargetransferinpolyphenyleneoxidebasedcomposites
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