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CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer

In this work, we report the successful fabrication of CO(2)-philic polymer composite membranes using a polyacrylonitrile-r-poly(ethylene glycol) methyl ether methacrylate (PAN-r-PEGMA) copolymer. The series of PAN-r-PEGMA copolymers with various amounts of PEG content was synthesized by free radical...

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Autores principales: Karunakaran, Madhavan, Kumar, Mahendra, Shevate, Rahul, Akhtar, Faheem Hassan, Peinemann, Klaus-Viktor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432164/
https://www.ncbi.nlm.nih.gov/pubmed/30970944
http://dx.doi.org/10.3390/polym9070219
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author Karunakaran, Madhavan
Kumar, Mahendra
Shevate, Rahul
Akhtar, Faheem Hassan
Peinemann, Klaus-Viktor
author_facet Karunakaran, Madhavan
Kumar, Mahendra
Shevate, Rahul
Akhtar, Faheem Hassan
Peinemann, Klaus-Viktor
author_sort Karunakaran, Madhavan
collection PubMed
description In this work, we report the successful fabrication of CO(2)-philic polymer composite membranes using a polyacrylonitrile-r-poly(ethylene glycol) methyl ether methacrylate (PAN-r-PEGMA) copolymer. The series of PAN-r-PEGMA copolymers with various amounts of PEG content was synthesized by free radical polymerization in presence of AIBN initiator and the obtained copolymers were used for the fabrication of composite membranes. The synthesized copolymers show high molecular weights in the range of 44–56 kDa. We were able to fabricate thin film composite (TFC) membranes by dip coating procedure using PAN-r-PEGMA copolymers and the porous PAN support membrane. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) were applied to analyze the surface morphology of the composite membranes. The microscopy analysis reveals the formation of the defect free skin selective layer of PAN-r-PEGMA copolymer over the porous PAN support membrane. Selective layer thickness of the composite membranes was in the range of 1.32–1.42 μm. The resulting composite membrane has CO(2) a permeance of 1.37 × 10(−1) m(3)/m(2)·h·bar and an ideal CO(2)/N(2), selectivity of 65. The TFC membranes showed increasing ideal gas pair selectivities in the order CO(2)/N(2) > CO(2)/CH(4) > CO(2)/H(2). In addition, the fabricated composite membranes were tested for long-term single gas permeation measurement and these membranes have remarkable stability, proving that they are good candidates for CO(2) separation.
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spelling pubmed-64321642019-04-02 CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer Karunakaran, Madhavan Kumar, Mahendra Shevate, Rahul Akhtar, Faheem Hassan Peinemann, Klaus-Viktor Polymers (Basel) Article In this work, we report the successful fabrication of CO(2)-philic polymer composite membranes using a polyacrylonitrile-r-poly(ethylene glycol) methyl ether methacrylate (PAN-r-PEGMA) copolymer. The series of PAN-r-PEGMA copolymers with various amounts of PEG content was synthesized by free radical polymerization in presence of AIBN initiator and the obtained copolymers were used for the fabrication of composite membranes. The synthesized copolymers show high molecular weights in the range of 44–56 kDa. We were able to fabricate thin film composite (TFC) membranes by dip coating procedure using PAN-r-PEGMA copolymers and the porous PAN support membrane. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) were applied to analyze the surface morphology of the composite membranes. The microscopy analysis reveals the formation of the defect free skin selective layer of PAN-r-PEGMA copolymer over the porous PAN support membrane. Selective layer thickness of the composite membranes was in the range of 1.32–1.42 μm. The resulting composite membrane has CO(2) a permeance of 1.37 × 10(−1) m(3)/m(2)·h·bar and an ideal CO(2)/N(2), selectivity of 65. The TFC membranes showed increasing ideal gas pair selectivities in the order CO(2)/N(2) > CO(2)/CH(4) > CO(2)/H(2). In addition, the fabricated composite membranes were tested for long-term single gas permeation measurement and these membranes have remarkable stability, proving that they are good candidates for CO(2) separation. MDPI 2017-07-06 /pmc/articles/PMC6432164/ /pubmed/30970944 http://dx.doi.org/10.3390/polym9070219 Text en © 2017 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
Karunakaran, Madhavan
Kumar, Mahendra
Shevate, Rahul
Akhtar, Faheem Hassan
Peinemann, Klaus-Viktor
CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title_full CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title_fullStr CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title_full_unstemmed CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title_short CO(2)-Philic Thin Film Composite Membranes: Synthesis and Characterization of PAN-r-PEGMA Copolymer
title_sort co(2)-philic thin film composite membranes: synthesis and characterization of pan-r-pegma copolymer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6432164/
https://www.ncbi.nlm.nih.gov/pubmed/30970944
http://dx.doi.org/10.3390/polym9070219
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