Polyvinylidene Fluoride Copolymers with Grafted Polyethyl Methacrylate Chains: Synthesis and Thermal and Dielectric Properties

Polyvinylidene fluoride copolymers with grafted polyethyl methacrylate chains have been synthesized for the first time via photoinduced reversible deactivation radical polymerization. Binary and ternary copolymers of vinylidene fluoride with chlorotrifluoroethylene and trifluoroethylene were used as...

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Veröffentlicht in:Polymer science. Series C 2022-12, Vol.64 (2), p.200-210
Hauptverfasser: Kleimyuk, E. A., Kosyakova, A.I., Buzin, A. I., Shevchenko, V. G., Luponosov, Yu. N., Ponomarenko, S. A.
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container_end_page 210
container_issue 2
container_start_page 200
container_title Polymer science. Series C
container_volume 64
creator Kleimyuk, E. A.
Kosyakova, A.I.
Buzin, A. I.
Shevchenko, V. G.
Luponosov, Yu. N.
Ponomarenko, S. A.
description Polyvinylidene fluoride copolymers with grafted polyethyl methacrylate chains have been synthesized for the first time via photoinduced reversible deactivation radical polymerization. Binary and ternary copolymers of vinylidene fluoride with chlorotrifluoroethylene and trifluoroethylene were used as initial polymer chains for modification. The effect of the content of grafted chains on the thermal and dielectric properties of the copolymers has been studied. It has been shown that an increase in the content of grafted chains leads to a decrease in the degradation temperature, dielectric permittivity, and dielectric losses of the copolymers, but it significantly improves their film-forming properties due to a decrease in the degree of crystallinity.
doi_str_mv 10.1134/S1811238222700138
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source Springer Nature - Complete Springer Journals
subjects Chemistry
Chemistry and Materials Science
Chlorotrifluoroethylene
Copolymers
Degree of crystallinity
Dielectric loss
Dielectric properties
Graft copolymers
Polymer Sciences
Polyvinylidene fluorides
Reviews
Vinylidene fluoride
title Polyvinylidene Fluoride Copolymers with Grafted Polyethyl Methacrylate Chains: Synthesis and Thermal and Dielectric Properties
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