Cargando…

Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius

A study of the properties of thermoradiationally modified polytetrafluoroethylene and its importance for use as the basis of polymer membranes is presented. The hydrogen permeability of a TRM-PTFE film was studied in comparison with an original PTFE film, and showed a three-fold decrease in hydrogen...

Descripción completa

Detalles Bibliográficos
Autores principales: Moskvitin, Lev Vladimirovich, Koshkina, Ol’ga Alekseevna, Slesarenko, Sergei Vital’evich, Arsentyev, Mikhail Aleksandrovich, Trakhtenberg, Leonid Izrailevich, Ryndya, Sergei Mikhailovich, Magomedbekov, Eldar Parpachevich, Smolyanskii, Alexander Sergeevich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866713/
https://www.ncbi.nlm.nih.gov/pubmed/36676908
http://dx.doi.org/10.3390/membranes13010101
_version_ 1784876160114491392
author Moskvitin, Lev Vladimirovich
Koshkina, Ol’ga Alekseevna
Slesarenko, Sergei Vital’evich
Arsentyev, Mikhail Aleksandrovich
Trakhtenberg, Leonid Izrailevich
Ryndya, Sergei Mikhailovich
Magomedbekov, Eldar Parpachevich
Smolyanskii, Alexander Sergeevich
author_facet Moskvitin, Lev Vladimirovich
Koshkina, Ol’ga Alekseevna
Slesarenko, Sergei Vital’evich
Arsentyev, Mikhail Aleksandrovich
Trakhtenberg, Leonid Izrailevich
Ryndya, Sergei Mikhailovich
Magomedbekov, Eldar Parpachevich
Smolyanskii, Alexander Sergeevich
author_sort Moskvitin, Lev Vladimirovich
collection PubMed
description A study of the properties of thermoradiationally modified polytetrafluoroethylene and its importance for use as the basis of polymer membranes is presented. The hydrogen permeability of a TRM-PTFE film was studied in comparison with an original PTFE film, and showed a three-fold decrease in hydrogen permeability. Further, TRM-PTFE films were irradiated with accelerated Xe ions with an energy of 1 MeV with fluences from 1 × 10(8) to 1 × 10(11). The changes induced by ion treatment were analyzed by infrared spectroscopy of disturbed total internal reflection (IR-ATR) and by atomic force microscopy (ASM). IR-ATR indicated the absence of destruction in the fluence range from 1 × 10(8) to 3 × 10(10) cm(−2) (in the area of isolated tracks) and the beginning of overlap of latent tracks on fluences from 3 × 10(10) to 1 × 10(11) cm(−2). Topographic images with AFM showed layered lamellar structures that collapsed at a fluence of 10(8) cm(−2). The destruction was accompanied by a decrease in roughness about seven times the size of the track core observed by the ASM method, fully corresponding to the value obtained on the basis of calculations using modeling in an SRIM program.
format Online
Article
Text
id pubmed-9866713
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98667132023-01-22 Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius Moskvitin, Lev Vladimirovich Koshkina, Ol’ga Alekseevna Slesarenko, Sergei Vital’evich Arsentyev, Mikhail Aleksandrovich Trakhtenberg, Leonid Izrailevich Ryndya, Sergei Mikhailovich Magomedbekov, Eldar Parpachevich Smolyanskii, Alexander Sergeevich Membranes (Basel) Article A study of the properties of thermoradiationally modified polytetrafluoroethylene and its importance for use as the basis of polymer membranes is presented. The hydrogen permeability of a TRM-PTFE film was studied in comparison with an original PTFE film, and showed a three-fold decrease in hydrogen permeability. Further, TRM-PTFE films were irradiated with accelerated Xe ions with an energy of 1 MeV with fluences from 1 × 10(8) to 1 × 10(11). The changes induced by ion treatment were analyzed by infrared spectroscopy of disturbed total internal reflection (IR-ATR) and by atomic force microscopy (ASM). IR-ATR indicated the absence of destruction in the fluence range from 1 × 10(8) to 3 × 10(10) cm(−2) (in the area of isolated tracks) and the beginning of overlap of latent tracks on fluences from 3 × 10(10) to 1 × 10(11) cm(−2). Topographic images with AFM showed layered lamellar structures that collapsed at a fluence of 10(8) cm(−2). The destruction was accompanied by a decrease in roughness about seven times the size of the track core observed by the ASM method, fully corresponding to the value obtained on the basis of calculations using modeling in an SRIM program. MDPI 2023-01-12 /pmc/articles/PMC9866713/ /pubmed/36676908 http://dx.doi.org/10.3390/membranes13010101 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Moskvitin, Lev Vladimirovich
Koshkina, Ol’ga Alekseevna
Slesarenko, Sergei Vital’evich
Arsentyev, Mikhail Aleksandrovich
Trakhtenberg, Leonid Izrailevich
Ryndya, Sergei Mikhailovich
Magomedbekov, Eldar Parpachevich
Smolyanskii, Alexander Sergeevich
Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title_full Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title_fullStr Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title_full_unstemmed Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title_short Thermoradiationally Modified Polytetrafluoroethylene as a Basis for Membrane Fabrication: Resistance to Hydrogen Penetration, the Effect of Ion Treatment on the Chemical Structure and Surface Morphology, Evaluation of the Track Radius
title_sort thermoradiationally modified polytetrafluoroethylene as a basis for membrane fabrication: resistance to hydrogen penetration, the effect of ion treatment on the chemical structure and surface morphology, evaluation of the track radius
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866713/
https://www.ncbi.nlm.nih.gov/pubmed/36676908
http://dx.doi.org/10.3390/membranes13010101
work_keys_str_mv AT moskvitinlevvladimirovich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT koshkinaolgaalekseevna thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT slesarenkosergeivitalevich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT arsentyevmikhailaleksandrovich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT trakhtenbergleonidizrailevich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT ryndyasergeimikhailovich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT magomedbekoveldarparpachevich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius
AT smolyanskiialexandersergeevich thermoradiationallymodifiedpolytetrafluoroethyleneasabasisformembranefabricationresistancetohydrogenpenetrationtheeffectofiontreatmentonthechemicalstructureandsurfacemorphologyevaluationofthetrackradius