Synthesis and Properties of a Conducting Material Based on Hybrid Nanofibers of Aliphatic Copolyamide and Polypyrrole

The conducting film material intended for research in the field of cell technology is obtained on the basis of two biocompatible polymers—aliphatic copolyamide and polypyrrole. The material consists of hybrid nanofibers having the core–shell structure. The film is formed by copolyamide microfibers t...

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Veröffentlicht in:Polymer science. Series B 2020-03, Vol.62 (2), p.116-124
Hauptverfasser: Sapurina, I. Yu, Matrenichev, V. V., Vlasova, E. N., Shishov, M. A., Ivan’kova, E. M., Dobrovolskaya, I. P., Yudin, V. E.
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container_end_page 124
container_issue 2
container_start_page 116
container_title Polymer science. Series B
container_volume 62
creator Sapurina, I. Yu
Matrenichev, V. V.
Vlasova, E. N.
Shishov, M. A.
Ivan’kova, E. M.
Dobrovolskaya, I. P.
Yudin, V. E.
description The conducting film material intended for research in the field of cell technology is obtained on the basis of two biocompatible polymers—aliphatic copolyamide and polypyrrole. The material consists of hybrid nanofibers having the core–shell structure. The film is formed by copolyamide microfibers that are obtained by electrospinning and coated with a polypyrrole nanolayer. Studies show that the material is stable and does not change its characteristics when stored both in air and in aqueous media. The hybrid fiber film has a high porosity, good water wettability, and a sufficient level of stress–strain characteristics. The resistance of the material is 300–600 Ω/sq, which allows its use for the electrical stimulation of proliferative activity of cells.
doi_str_mv 10.1134/S156009042001008X
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source Springer Nature - Complete Springer Journals
subjects Aliphatic compounds
Aqueous solutions
Biocompatibility
Chemistry
Chemistry and Materials Science
Core-shell structure
Microfibers
Nanofibers
Polymer Blends
Polymer Sciences
Polypyrroles
Porosity
Wettability
title Synthesis and Properties of a Conducting Material Based on Hybrid Nanofibers of Aliphatic Copolyamide and Polypyrrole
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