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Structure of Conducting Polymer Films Prepared on the Surface and in the Pores of Poly(ethylene terephthalate) Track Membranes by Template Synthesis
Authors:L Yu Dobretsova  S V Ermolaev  V K Milinchuk  N I Jitariouk  A Le Moel
Institution:(1) Obninsk State Technical University of Nuclear Power Engineering, Studgorodok 1, Obninsk, Kaluga oblast, 249020, Russia;(2) Institute for Nuclear Research, Russian Academy of Sciences, pr. Shestidesyatiletiya Oktyabrya 7a, Moscow, 117312, Russia;(3) ProFiltra, 78, rue d'Aguesseau, 92100 Boulogne, France;(4) Laboratoire des Polymeres Irradies, DSM/DRECAM/LSI/LPI–Building 466 CEA/Saclay, F-91191 Gif sur Yvette Cedex, France
Abstract:The results of a structural study of conducting polymer coatings deposited onto poly(ethylene terephthalate) (PET) track membranes by template synthesis are reported. The following aspects of the quality of polymer coatings were studied: the ratio between film and granular polymers, the polymer distribution over the surface of track membranes, and the thickness of polymer layers on the opposite sides of track membranes. The fraction of granular polypyrrole (PPy) on the surface and in the pores of a film increased with pore diameter. A decrease in the polymerization temperature decreased the amount of granular PPy on the surface of membranes, whereas the effect of granular PPy on the water permeability of track membranes remained unchanged. A more homogeneous distribution of PPy over the surface of track membranes can be obtained by density equalization of reacting solutions; however, the fraction of granular PPy on the membrane surface increased in this case. It was found that polymer coatings on the two sides of the surface of a membrane template had different thicknesses. Poly(N-methylpyrrole) completely covered only one side of a track membrane facing a monomer solution.
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