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Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes

Novel nanoporous Gl-POSS-branched polymers based on the macroinitiator of anionic nature, 2,4-toluene diisocyanate, and octaglycidyl polyhedral oligomeric silsesquioxane (Gl-POSS) were obtained as gas separation membranes. The synthesis of polymers was carried out using various loads of Gl-POSS. It...

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Autores principales: Zaripov, Ilnaz I., Davletbaeva, Ilsiya M., Faizulina, Zulfiya Z., Davletbaev, Ruslan S., Gubaidullin, Aidar T., Atlaskin, Artem A., Vorotyntsev, Ilya V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7281127/
https://www.ncbi.nlm.nih.gov/pubmed/32456351
http://dx.doi.org/10.3390/membranes10050110
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author Zaripov, Ilnaz I.
Davletbaeva, Ilsiya M.
Faizulina, Zulfiya Z.
Davletbaev, Ruslan S.
Gubaidullin, Aidar T.
Atlaskin, Artem A.
Vorotyntsev, Ilya V.
author_facet Zaripov, Ilnaz I.
Davletbaeva, Ilsiya M.
Faizulina, Zulfiya Z.
Davletbaev, Ruslan S.
Gubaidullin, Aidar T.
Atlaskin, Artem A.
Vorotyntsev, Ilya V.
author_sort Zaripov, Ilnaz I.
collection PubMed
description Novel nanoporous Gl-POSS-branched polymers based on the macroinitiator of anionic nature, 2,4-toluene diisocyanate, and octaglycidyl polyhedral oligomeric silsesquioxane (Gl-POSS) were obtained as gas separation membranes. The synthesis of polymers was carried out using various loads of Gl-POSS. It was found that the main reaction proceeding with 2,4-toluene diisocyanate is the polyaddition, accompanied by the isocyanate groups opening of the carbonyl part. This unusual opening of isocyanate groups leads to the formation of coplanar acetal nature polyisocyanates (O-polyisocyanate). The terminal O-polyisocyanate links initiate the subsequent opening of the epoxide rings in Gl-POSS. As a result, Gl-POSS serves as a hard and bulky branching agent and creates the specific framing supramolecular structure, which leads to the formation of nanopores in the polymer, where the flexible polyether components are located inside the cavities. Thermal, mechanical, physical, and chemical properties of the obtained polymers were studied at various Gl-POSS contents in the polymer matrix. It was found that these polymers show high selectivity of gas transport properties for pure ammonia relative to nitrogen and hydrogen at ambient temperature. Measurements showed that the gas permeability coefficients and the values of ideal selectivity were in a non-additive dependence to the Gl-POSS content.
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spelling pubmed-72811272020-06-15 Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes Zaripov, Ilnaz I. Davletbaeva, Ilsiya M. Faizulina, Zulfiya Z. Davletbaev, Ruslan S. Gubaidullin, Aidar T. Atlaskin, Artem A. Vorotyntsev, Ilya V. Membranes (Basel) Article Novel nanoporous Gl-POSS-branched polymers based on the macroinitiator of anionic nature, 2,4-toluene diisocyanate, and octaglycidyl polyhedral oligomeric silsesquioxane (Gl-POSS) were obtained as gas separation membranes. The synthesis of polymers was carried out using various loads of Gl-POSS. It was found that the main reaction proceeding with 2,4-toluene diisocyanate is the polyaddition, accompanied by the isocyanate groups opening of the carbonyl part. This unusual opening of isocyanate groups leads to the formation of coplanar acetal nature polyisocyanates (O-polyisocyanate). The terminal O-polyisocyanate links initiate the subsequent opening of the epoxide rings in Gl-POSS. As a result, Gl-POSS serves as a hard and bulky branching agent and creates the specific framing supramolecular structure, which leads to the formation of nanopores in the polymer, where the flexible polyether components are located inside the cavities. Thermal, mechanical, physical, and chemical properties of the obtained polymers were studied at various Gl-POSS contents in the polymer matrix. It was found that these polymers show high selectivity of gas transport properties for pure ammonia relative to nitrogen and hydrogen at ambient temperature. Measurements showed that the gas permeability coefficients and the values of ideal selectivity were in a non-additive dependence to the Gl-POSS content. MDPI 2020-05-24 /pmc/articles/PMC7281127/ /pubmed/32456351 http://dx.doi.org/10.3390/membranes10050110 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zaripov, Ilnaz I.
Davletbaeva, Ilsiya M.
Faizulina, Zulfiya Z.
Davletbaev, Ruslan S.
Gubaidullin, Aidar T.
Atlaskin, Artem A.
Vorotyntsev, Ilya V.
Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title_full Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title_fullStr Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title_full_unstemmed Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title_short Synthesis and Characterization of Novel Nanoporous Gl-POSS-Branched Polymeric Gas Separation Membranes
title_sort synthesis and characterization of novel nanoporous gl-poss-branched polymeric gas separation membranes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7281127/
https://www.ncbi.nlm.nih.gov/pubmed/32456351
http://dx.doi.org/10.3390/membranes10050110
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