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New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties

A set of five new aromatic poly(imide)s (PIs) incorporating pendant acyclic alkyl moieties were synthesized. The difference among them was the length and bulkiness of the pendant group, which comprises of linear alkyl chains from three to six carbon atoms, and a tert-butyl moiety. The effect of the...

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Autores principales: Rodríguez-González, Fidel E., Pérez, Germán, Niebla, Vladimir, Jessop, Ignacio, Martin-Trasanco, Rudy, Coll, Deysma, Ortiz, Pablo, Aguilar-Vega, Manuel, Tagle, Luis H., Terraza, Claudio A., Tundidor-Camba, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407386/
https://www.ncbi.nlm.nih.gov/pubmed/32635517
http://dx.doi.org/10.3390/membranes10070141
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author Rodríguez-González, Fidel E.
Pérez, Germán
Niebla, Vladimir
Jessop, Ignacio
Martin-Trasanco, Rudy
Coll, Deysma
Ortiz, Pablo
Aguilar-Vega, Manuel
Tagle, Luis H.
Terraza, Claudio A.
Tundidor-Camba, Alain
author_facet Rodríguez-González, Fidel E.
Pérez, Germán
Niebla, Vladimir
Jessop, Ignacio
Martin-Trasanco, Rudy
Coll, Deysma
Ortiz, Pablo
Aguilar-Vega, Manuel
Tagle, Luis H.
Terraza, Claudio A.
Tundidor-Camba, Alain
author_sort Rodríguez-González, Fidel E.
collection PubMed
description A set of five new aromatic poly(imide)s (PIs) incorporating pendant acyclic alkyl moieties were synthesized. The difference among them was the length and bulkiness of the pendant group, which comprises of linear alkyl chains from three to six carbon atoms, and a tert-butyl moiety. The effect of the side group length on the physical, thermal, mechanical, and gas transport properties was analyzed. All PIs exhibited low to moderate molecular weights (Mn ranged between 27.930–58.970 Da, and Mw ranged between 41.760–81.310 Da), good solubility in aprotic polar solvents, except for PI-t-4, which had a tert-butyl moiety and was soluble even in chloroform. This behaviour was probably due to the most significant bulkiness of the side group that increased the interchain distance, which was corroborated by the X-ray technique (PI-t-4 showed two d-spacing values: 5.1 and 14.3 Å). Pure gas permeabilities for several gases were reported (PI-3 (Barrer): He(52); H(2)(46); O(2)(5.4); N(2)(1.2); CH(4)(1.1); CO(2)(23); PI-t-4 (Barrer): He(139); H(2)(136); O(2)(16.7); N(2)(3.3); CH(4)(2.3); CO(2)(75); PI-5 (Barrer): He(44); H(2)(42); O(2)(5.9); N(2)(1.4); CH(4)(1.2); CO(2)(27); PI-6 (Barrer): He(45); H(2)(43); O(2)(6.7); N(2)(1.7); CH(4)(1.7); CO(2)(32)). Consistent higher volume in the side group was shown to yield the highest gas permeability. All poly(imide)s exhibited high thermal stability with 10% weight loss degradation temperature between 448–468 °C and glass transition temperature between 240–270 °C. The values associated to the tensile strength (45–87 MPa), elongation at break (3.2–11.98%), and tensile modulus (1.43–2.19 GPa) were those expected for aromatic poly(imide)s.
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spelling pubmed-74073862020-08-25 New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties Rodríguez-González, Fidel E. Pérez, Germán Niebla, Vladimir Jessop, Ignacio Martin-Trasanco, Rudy Coll, Deysma Ortiz, Pablo Aguilar-Vega, Manuel Tagle, Luis H. Terraza, Claudio A. Tundidor-Camba, Alain Membranes (Basel) Article A set of five new aromatic poly(imide)s (PIs) incorporating pendant acyclic alkyl moieties were synthesized. The difference among them was the length and bulkiness of the pendant group, which comprises of linear alkyl chains from three to six carbon atoms, and a tert-butyl moiety. The effect of the side group length on the physical, thermal, mechanical, and gas transport properties was analyzed. All PIs exhibited low to moderate molecular weights (Mn ranged between 27.930–58.970 Da, and Mw ranged between 41.760–81.310 Da), good solubility in aprotic polar solvents, except for PI-t-4, which had a tert-butyl moiety and was soluble even in chloroform. This behaviour was probably due to the most significant bulkiness of the side group that increased the interchain distance, which was corroborated by the X-ray technique (PI-t-4 showed two d-spacing values: 5.1 and 14.3 Å). Pure gas permeabilities for several gases were reported (PI-3 (Barrer): He(52); H(2)(46); O(2)(5.4); N(2)(1.2); CH(4)(1.1); CO(2)(23); PI-t-4 (Barrer): He(139); H(2)(136); O(2)(16.7); N(2)(3.3); CH(4)(2.3); CO(2)(75); PI-5 (Barrer): He(44); H(2)(42); O(2)(5.9); N(2)(1.4); CH(4)(1.2); CO(2)(27); PI-6 (Barrer): He(45); H(2)(43); O(2)(6.7); N(2)(1.7); CH(4)(1.7); CO(2)(32)). Consistent higher volume in the side group was shown to yield the highest gas permeability. All poly(imide)s exhibited high thermal stability with 10% weight loss degradation temperature between 448–468 °C and glass transition temperature between 240–270 °C. The values associated to the tensile strength (45–87 MPa), elongation at break (3.2–11.98%), and tensile modulus (1.43–2.19 GPa) were those expected for aromatic poly(imide)s. MDPI 2020-07-04 /pmc/articles/PMC7407386/ /pubmed/32635517 http://dx.doi.org/10.3390/membranes10070141 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
Rodríguez-González, Fidel E.
Pérez, Germán
Niebla, Vladimir
Jessop, Ignacio
Martin-Trasanco, Rudy
Coll, Deysma
Ortiz, Pablo
Aguilar-Vega, Manuel
Tagle, Luis H.
Terraza, Claudio A.
Tundidor-Camba, Alain
New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title_full New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title_fullStr New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title_full_unstemmed New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title_short New Poly(imide)s Bearing Alkyl Side-Chains: A Study on the Impact of Size and Shape of Lateral Groups on Thermal, Mechanical, and Gas Transport Properties
title_sort new poly(imide)s bearing alkyl side-chains: a study on the impact of size and shape of lateral groups on thermal, mechanical, and gas transport properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7407386/
https://www.ncbi.nlm.nih.gov/pubmed/32635517
http://dx.doi.org/10.3390/membranes10070141
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