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Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties

The possibility of targeted change of the properties of ion exchange membranes by incorporation of various nanoparticles into the membranes is attracting the attention of many research groups. Here we studied for the first time the influence of cerium phosphate nanoparticles on the physicochemical a...

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Autores principales: Manin, Andrey, Golubenko, Daniel, Novikova, Svetlana, Yaroslavtsev, Andrey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386577/
https://www.ncbi.nlm.nih.gov/pubmed/37504990
http://dx.doi.org/10.3390/membranes13070624
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author Manin, Andrey
Golubenko, Daniel
Novikova, Svetlana
Yaroslavtsev, Andrey
author_facet Manin, Andrey
Golubenko, Daniel
Novikova, Svetlana
Yaroslavtsev, Andrey
author_sort Manin, Andrey
collection PubMed
description The possibility of targeted change of the properties of ion exchange membranes by incorporation of various nanoparticles into the membranes is attracting the attention of many research groups. Here we studied for the first time the influence of cerium phosphate nanoparticles on the physicochemical and transport properties of commercial anion exchange membranes based on quaternary ammonium-functionalized polystyrenes, such as heterogeneous Ralex(®) AM and pseudo-homogeneous Neosepta(®) AMX. The incorporation of cerium phosphate on one side of the membrane was performed by precipitation from absorbed cerium ammonium nitrate (CAN) anionic complex with ammonium dihydrogen phosphate or phosphoric acid. The structures of the obtained hybrid membranes and separately synthesized cerium phosphate were investigated using FTIR, P31 MAS NMR, EDX mapping, and scanning electron microscopy. The modification increased the membrane selectivity to monovalent ions in the ED desalination of an equimolar mixture of NaCl and Na(2)SO(4). The highest selectivities of Ralex(®) AM and Neosepta(®) AMX-based hybrid membranes were 4.9 and 7.7, respectively. In addition, the modification of Neosepta(®) membranes also increased the resistance to a typical anionic surfactant, sodium dodecylbenzenesulfonate.
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spelling pubmed-103865772023-07-30 Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties Manin, Andrey Golubenko, Daniel Novikova, Svetlana Yaroslavtsev, Andrey Membranes (Basel) Article The possibility of targeted change of the properties of ion exchange membranes by incorporation of various nanoparticles into the membranes is attracting the attention of many research groups. Here we studied for the first time the influence of cerium phosphate nanoparticles on the physicochemical and transport properties of commercial anion exchange membranes based on quaternary ammonium-functionalized polystyrenes, such as heterogeneous Ralex(®) AM and pseudo-homogeneous Neosepta(®) AMX. The incorporation of cerium phosphate on one side of the membrane was performed by precipitation from absorbed cerium ammonium nitrate (CAN) anionic complex with ammonium dihydrogen phosphate or phosphoric acid. The structures of the obtained hybrid membranes and separately synthesized cerium phosphate were investigated using FTIR, P31 MAS NMR, EDX mapping, and scanning electron microscopy. The modification increased the membrane selectivity to monovalent ions in the ED desalination of an equimolar mixture of NaCl and Na(2)SO(4). The highest selectivities of Ralex(®) AM and Neosepta(®) AMX-based hybrid membranes were 4.9 and 7.7, respectively. In addition, the modification of Neosepta(®) membranes also increased the resistance to a typical anionic surfactant, sodium dodecylbenzenesulfonate. MDPI 2023-06-26 /pmc/articles/PMC10386577/ /pubmed/37504990 http://dx.doi.org/10.3390/membranes13070624 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
Manin, Andrey
Golubenko, Daniel
Novikova, Svetlana
Yaroslavtsev, Andrey
Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title_full Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title_fullStr Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title_full_unstemmed Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title_short Composite Anion Exchange Membranes Based on Quaternary Ammonium-Functionalized Polystyrene and Cerium(IV) Phosphate with Improved Monovalent-Ion Selectivity and Antifouling Properties
title_sort composite anion exchange membranes based on quaternary ammonium-functionalized polystyrene and cerium(iv) phosphate with improved monovalent-ion selectivity and antifouling properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386577/
https://www.ncbi.nlm.nih.gov/pubmed/37504990
http://dx.doi.org/10.3390/membranes13070624
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