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Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties

Commercial metathesis polynorbornene is used for the fabrication of high-damping coatings and bulk materials that dissipate vibration and impact energies. Functionalization of this non-polar polymer can improve its adhesive, gas barrier, and other properties, thereby potentially expanding its applic...

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Autores principales: Roenko, Alexey V., Nikiforov, Roman Y., Gringolts, Maria L., Belov, Nikolay A., Denisova, Yulia I., Shandryuk, Georgiy A., Bondarenko, Galina N., Kudryavtsev, Yaroslav V., Finkelshtein, Eugene S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839206/
https://www.ncbi.nlm.nih.gov/pubmed/35160434
http://dx.doi.org/10.3390/polym14030444
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author Roenko, Alexey V.
Nikiforov, Roman Y.
Gringolts, Maria L.
Belov, Nikolay A.
Denisova, Yulia I.
Shandryuk, Georgiy A.
Bondarenko, Galina N.
Kudryavtsev, Yaroslav V.
Finkelshtein, Eugene S.
author_facet Roenko, Alexey V.
Nikiforov, Roman Y.
Gringolts, Maria L.
Belov, Nikolay A.
Denisova, Yulia I.
Shandryuk, Georgiy A.
Bondarenko, Galina N.
Kudryavtsev, Yaroslav V.
Finkelshtein, Eugene S.
author_sort Roenko, Alexey V.
collection PubMed
description Commercial metathesis polynorbornene is used for the fabrication of high-damping coatings and bulk materials that dissipate vibration and impact energies. Functionalization of this non-polar polymer can improve its adhesive, gas barrier, and other properties, thereby potentially expanding its application area. With this aim, the post-modification of polynorbornene was carried out by inserting ethylene–vinyl acetate–vinyl alcohol blocks into its backbone via the cross-metathesis of polynorbornene with poly(5-acetoxy-1-octenylene) and subsequent deacetylation and hydrogenation of the obtained multiblock copolymers. For the first time, epoxy groups were introduced into the main chains of these copolymers, followed by the oxirane ring opening reaction. The influence of post-modification on the thermal, gas separation, and mechanical properties of the new copolymers was studied. It was shown that the gas permeability of the copolymer significantly depends on its composition, as well as on the amounts of hydroxyl and epoxy groups. The developed methods efficiently improve the barrier properties, reducing the oxygen permeability by 15–33 times in comparison with polynorbornene. The obtained results are promising for various applications and can be extended to a broader family of polydienes and other polymers containing backbone double bonds.
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spelling pubmed-88392062022-02-13 Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties Roenko, Alexey V. Nikiforov, Roman Y. Gringolts, Maria L. Belov, Nikolay A. Denisova, Yulia I. Shandryuk, Georgiy A. Bondarenko, Galina N. Kudryavtsev, Yaroslav V. Finkelshtein, Eugene S. Polymers (Basel) Article Commercial metathesis polynorbornene is used for the fabrication of high-damping coatings and bulk materials that dissipate vibration and impact energies. Functionalization of this non-polar polymer can improve its adhesive, gas barrier, and other properties, thereby potentially expanding its application area. With this aim, the post-modification of polynorbornene was carried out by inserting ethylene–vinyl acetate–vinyl alcohol blocks into its backbone via the cross-metathesis of polynorbornene with poly(5-acetoxy-1-octenylene) and subsequent deacetylation and hydrogenation of the obtained multiblock copolymers. For the first time, epoxy groups were introduced into the main chains of these copolymers, followed by the oxirane ring opening reaction. The influence of post-modification on the thermal, gas separation, and mechanical properties of the new copolymers was studied. It was shown that the gas permeability of the copolymer significantly depends on its composition, as well as on the amounts of hydroxyl and epoxy groups. The developed methods efficiently improve the barrier properties, reducing the oxygen permeability by 15–33 times in comparison with polynorbornene. The obtained results are promising for various applications and can be extended to a broader family of polydienes and other polymers containing backbone double bonds. MDPI 2022-01-22 /pmc/articles/PMC8839206/ /pubmed/35160434 http://dx.doi.org/10.3390/polym14030444 Text en © 2022 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
Roenko, Alexey V.
Nikiforov, Roman Y.
Gringolts, Maria L.
Belov, Nikolay A.
Denisova, Yulia I.
Shandryuk, Georgiy A.
Bondarenko, Galina N.
Kudryavtsev, Yaroslav V.
Finkelshtein, Eugene S.
Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title_full Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title_fullStr Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title_full_unstemmed Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title_short Olefin-Metathesis-Derived Norbornene–Ethylene–Vinyl Acetate/Vinyl Alcohol Multiblock Copolymers: Impact of the Copolymer Structure on the Gas Permeation Properties
title_sort olefin-metathesis-derived norbornene–ethylene–vinyl acetate/vinyl alcohol multiblock copolymers: impact of the copolymer structure on the gas permeation properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839206/
https://www.ncbi.nlm.nih.gov/pubmed/35160434
http://dx.doi.org/10.3390/polym14030444
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