Cargando…

A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability

Novel anion exchange membranes with enhanced ion exchange capacity, dimensional stability and alkali stability were prepared by a facile synthesis method. Internal crosslinking networks in the resulting membranes were achieved by reacting chloromethylated polysulfone with 4,4′-trimethylene bis(1-met...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Chao, Pan, Nengxiu, Jiang, Yuliang, Liao, Junbin, Sotto, Arcadio, Ruan, Huimin, Gao, Congjie, Shen, Jiangnan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9075031/
https://www.ncbi.nlm.nih.gov/pubmed/35540625
http://dx.doi.org/10.1039/c9ra07433c
_version_ 1784701590745120768
author Wang, Chao
Pan, Nengxiu
Jiang, Yuliang
Liao, Junbin
Sotto, Arcadio
Ruan, Huimin
Gao, Congjie
Shen, Jiangnan
author_facet Wang, Chao
Pan, Nengxiu
Jiang, Yuliang
Liao, Junbin
Sotto, Arcadio
Ruan, Huimin
Gao, Congjie
Shen, Jiangnan
author_sort Wang, Chao
collection PubMed
description Novel anion exchange membranes with enhanced ion exchange capacity, dimensional stability and alkali stability were prepared by a facile synthesis method. Internal crosslinking networks in the resulting membranes were achieved by reacting chloromethylated polysulfone with 4,4′-trimethylene bis(1-methylpiperidine) (BMP), where BMP was used as both a quaternization reagent and crosslinker without requirement of post-functionalization. In order to evaluate the alkali resistance and dimension stability performance of the resulting membranes, the molar ratio of BMP in the resulting membranes was fixed at four different contents: 40%, 60%, 80% and 100%. The obtained membranes were accordingly denoted as CAPSF-N, in which N = 40, 60, 80 and 100, respectively. Due to the dense internal network structure and spatial conformation of the six-membered rings, the resulting CAPSF-N AEMs showed enhanced dimensional structures (at 60 °C, the water uptakes and swelling ratios of CAPSF-N were 8.42% to 14.84% and 2.32% to 5.93%, respectively, whereas those for the commercial AEM Neosepta AMX were 44.23% and 4.22%, respectively). In addition, after soaking in 1 M KOH solution at 60 °C for 15 days, the modified membranes exhibited excellent alkaline stability. The CAPSF-100 membrane showed the highest alkali stability (retained 85% of its original ion exchange capacity and 84% of its original OH(−) conduction after the alkaline stability test), whereas the non-crosslinked APSF broke into pieces. Additionally, compared to the commercial Neosepta AMX membrane under the same test conditions, the desalination efficiency of CAPSF-100 was enhanced, and the energy consumption was lower.
format Online
Article
Text
id pubmed-9075031
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90750312022-05-09 A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability Wang, Chao Pan, Nengxiu Jiang, Yuliang Liao, Junbin Sotto, Arcadio Ruan, Huimin Gao, Congjie Shen, Jiangnan RSC Adv Chemistry Novel anion exchange membranes with enhanced ion exchange capacity, dimensional stability and alkali stability were prepared by a facile synthesis method. Internal crosslinking networks in the resulting membranes were achieved by reacting chloromethylated polysulfone with 4,4′-trimethylene bis(1-methylpiperidine) (BMP), where BMP was used as both a quaternization reagent and crosslinker without requirement of post-functionalization. In order to evaluate the alkali resistance and dimension stability performance of the resulting membranes, the molar ratio of BMP in the resulting membranes was fixed at four different contents: 40%, 60%, 80% and 100%. The obtained membranes were accordingly denoted as CAPSF-N, in which N = 40, 60, 80 and 100, respectively. Due to the dense internal network structure and spatial conformation of the six-membered rings, the resulting CAPSF-N AEMs showed enhanced dimensional structures (at 60 °C, the water uptakes and swelling ratios of CAPSF-N were 8.42% to 14.84% and 2.32% to 5.93%, respectively, whereas those for the commercial AEM Neosepta AMX were 44.23% and 4.22%, respectively). In addition, after soaking in 1 M KOH solution at 60 °C for 15 days, the modified membranes exhibited excellent alkaline stability. The CAPSF-100 membrane showed the highest alkali stability (retained 85% of its original ion exchange capacity and 84% of its original OH(−) conduction after the alkaline stability test), whereas the non-crosslinked APSF broke into pieces. Additionally, compared to the commercial Neosepta AMX membrane under the same test conditions, the desalination efficiency of CAPSF-100 was enhanced, and the energy consumption was lower. The Royal Society of Chemistry 2019-11-08 /pmc/articles/PMC9075031/ /pubmed/35540625 http://dx.doi.org/10.1039/c9ra07433c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wang, Chao
Pan, Nengxiu
Jiang, Yuliang
Liao, Junbin
Sotto, Arcadio
Ruan, Huimin
Gao, Congjie
Shen, Jiangnan
A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title_full A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title_fullStr A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title_full_unstemmed A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title_short A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
title_sort facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9075031/
https://www.ncbi.nlm.nih.gov/pubmed/35540625
http://dx.doi.org/10.1039/c9ra07433c
work_keys_str_mv AT wangchao afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT pannengxiu afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT jiangyuliang afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT liaojunbin afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT sottoarcadio afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT ruanhuimin afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT gaocongjie afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT shenjiangnan afacileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT wangchao facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT pannengxiu facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT jiangyuliang facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT liaojunbin facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT sottoarcadio facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT ruanhuimin facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT gaocongjie facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability
AT shenjiangnan facileapproachtopreparecrosslinkedpolysulfonebasedanionexchangemembraneswithenhancedalkaliresistanceanddimensionalstability