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Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane

The development of membrane materials with high transport and separation properties for the removal of higher hydrocarbons from gas mixtures is an important and complex task. This work examines the effect of a cross-linking agent on the structure and transport properties of polydecylmethylsiloxane (...

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Autores principales: Grushevenko, Evgenia, Rokhmanka, Tatiana, Sokolov, Stepan, Basko, Andrey, Borisov, Ilya, Pochivalov, Konstantin, Volkov, Alexey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674475/
https://www.ncbi.nlm.nih.gov/pubmed/38006159
http://dx.doi.org/10.3390/polym15224436
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author Grushevenko, Evgenia
Rokhmanka, Tatiana
Sokolov, Stepan
Basko, Andrey
Borisov, Ilya
Pochivalov, Konstantin
Volkov, Alexey
author_facet Grushevenko, Evgenia
Rokhmanka, Tatiana
Sokolov, Stepan
Basko, Andrey
Borisov, Ilya
Pochivalov, Konstantin
Volkov, Alexey
author_sort Grushevenko, Evgenia
collection PubMed
description The development of membrane materials with high transport and separation properties for the removal of higher hydrocarbons from gas mixtures is an important and complex task. This work examines the effect of a cross-linking agent on the structure and transport properties of polydecylmethylsiloxane (C10), a material characterized by high selectivity towards C(3+) hydrocarbons. C10 was cross-linked with various diene hydrocarbons, such as 1,7-octadiene (C10-OD), 1,9-decadiene (C10-DD), 1,11-dodecadiene (C10-DdD), and vinyl-terminated polysiloxanes, of different molecular weights: 500 g/mol (C10-Sil500) and 25,000 g/mol (C10-Sil25-OD). Using a number of characterization methods (IR-spectroscopy, WAXS, DSC, toluene sorption, and gas permeability), it was revealed that a change in the type and length of the cross-linking agent (at the same mole concentration of cross-linking agent) led to a significant change in the structure of the polymer material. The nature of cross-linking agent affected the arrangement of the decyl side-groups of the polymer, resulting in noticeable differences in the solubility, diffusivity, permeability, and selectivity of tested gases (N(2), CH(4), C(2)H(6), and C(4)H(10)). For instance, an increase in the length of the hydrocarbon cross-linker was associated with a drop of n-butane permeability from 5510 (C10-OD) to 3000 Barrer (C10-DdD); however, the transition to a polysiloxane cross-linker led to an increase in corresponded permeability up to 8200 Barrer (C10-Sil25-OD). The n-butane/nitrogen selectivity was significantly higher for diene-type cross-linkers, and the maximum value was achieved for 1,7-octadiene (α(C(4)H(10)/N(2)) = 104).
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spelling pubmed-106744752023-11-16 Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane Grushevenko, Evgenia Rokhmanka, Tatiana Sokolov, Stepan Basko, Andrey Borisov, Ilya Pochivalov, Konstantin Volkov, Alexey Polymers (Basel) Article The development of membrane materials with high transport and separation properties for the removal of higher hydrocarbons from gas mixtures is an important and complex task. This work examines the effect of a cross-linking agent on the structure and transport properties of polydecylmethylsiloxane (C10), a material characterized by high selectivity towards C(3+) hydrocarbons. C10 was cross-linked with various diene hydrocarbons, such as 1,7-octadiene (C10-OD), 1,9-decadiene (C10-DD), 1,11-dodecadiene (C10-DdD), and vinyl-terminated polysiloxanes, of different molecular weights: 500 g/mol (C10-Sil500) and 25,000 g/mol (C10-Sil25-OD). Using a number of characterization methods (IR-spectroscopy, WAXS, DSC, toluene sorption, and gas permeability), it was revealed that a change in the type and length of the cross-linking agent (at the same mole concentration of cross-linking agent) led to a significant change in the structure of the polymer material. The nature of cross-linking agent affected the arrangement of the decyl side-groups of the polymer, resulting in noticeable differences in the solubility, diffusivity, permeability, and selectivity of tested gases (N(2), CH(4), C(2)H(6), and C(4)H(10)). For instance, an increase in the length of the hydrocarbon cross-linker was associated with a drop of n-butane permeability from 5510 (C10-OD) to 3000 Barrer (C10-DdD); however, the transition to a polysiloxane cross-linker led to an increase in corresponded permeability up to 8200 Barrer (C10-Sil25-OD). The n-butane/nitrogen selectivity was significantly higher for diene-type cross-linkers, and the maximum value was achieved for 1,7-octadiene (α(C(4)H(10)/N(2)) = 104). MDPI 2023-11-16 /pmc/articles/PMC10674475/ /pubmed/38006159 http://dx.doi.org/10.3390/polym15224436 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
Grushevenko, Evgenia
Rokhmanka, Tatiana
Sokolov, Stepan
Basko, Andrey
Borisov, Ilya
Pochivalov, Konstantin
Volkov, Alexey
Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title_full Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title_fullStr Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title_full_unstemmed Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title_short Influence of Type of Cross-Linking Agent on Structure and Transport Properties of Polydecylmethylsiloxane
title_sort influence of type of cross-linking agent on structure and transport properties of polydecylmethylsiloxane
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674475/
https://www.ncbi.nlm.nih.gov/pubmed/38006159
http://dx.doi.org/10.3390/polym15224436
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