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Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture

MIL-101 (Fe) and MIL-GO composites were successfully synthesized and used as fillers for the preparation of Pebax® 2533/PVDF thin film MMMs for CO(2)/N(2) separation. The defect-free Pebax® 2533/PVDF thin film MMMs were fabricated by casting the Pebax solution containing fillers on the PVDF support....

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Autores principales: Li, Guoqiang, Kujawski, Wojciech, Knozowska, Katarzyna, Kujawa, Joanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9555015/
https://www.ncbi.nlm.nih.gov/pubmed/36320736
http://dx.doi.org/10.1039/d2ra05095a
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author Li, Guoqiang
Kujawski, Wojciech
Knozowska, Katarzyna
Kujawa, Joanna
author_facet Li, Guoqiang
Kujawski, Wojciech
Knozowska, Katarzyna
Kujawa, Joanna
author_sort Li, Guoqiang
collection PubMed
description MIL-101 (Fe) and MIL-GO composites were successfully synthesized and used as fillers for the preparation of Pebax® 2533/PVDF thin film MMMs for CO(2)/N(2) separation. The defect-free Pebax® 2533/PVDF thin film MMMs were fabricated by casting the Pebax solution containing fillers on the PVDF support. The presence of GO nanosheets in the reaction solution did not destroy the crystal structure of MIL-101 (Fe). However, the BET surface area and total pore volume of MIL-GO decreased dramatically, comparing with MIL-101 (Fe). The incorporation of MIL-GO-2 into Pebax matrix simultaneously increased the CO(2) permeability and the CO(2)/N(2) ideal selectivity of Pebax® 2533/PVDF thin film MMMs mainly owing to the porous structure of MIL-GO-2, and the tortuous diffusion pathways created by GO nanosheets. MMMs containing 9.1 wt% MIL-GO-2 exhibited the highest CO(2) permeability equal to 303 barrer (1 barrer = 10(−10) cm(3) (STP) cm cm(−2) s(−1) cmHg(−1)) and the highest CO(2)/N(2) ideal selectivity equal to 24. Pebax-based MMMs containing composite fillers showed higher gas separation performance than the Pebax-based MMMs containing single filler (GO or MOFs). Therefore, the synthesis and utilization of 3D@2D composite filler demonstrated great potential in the preparation of high-performance MMMs for gas separation processes.
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spelling pubmed-95550152022-10-31 Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture Li, Guoqiang Kujawski, Wojciech Knozowska, Katarzyna Kujawa, Joanna RSC Adv Chemistry MIL-101 (Fe) and MIL-GO composites were successfully synthesized and used as fillers for the preparation of Pebax® 2533/PVDF thin film MMMs for CO(2)/N(2) separation. The defect-free Pebax® 2533/PVDF thin film MMMs were fabricated by casting the Pebax solution containing fillers on the PVDF support. The presence of GO nanosheets in the reaction solution did not destroy the crystal structure of MIL-101 (Fe). However, the BET surface area and total pore volume of MIL-GO decreased dramatically, comparing with MIL-101 (Fe). The incorporation of MIL-GO-2 into Pebax matrix simultaneously increased the CO(2) permeability and the CO(2)/N(2) ideal selectivity of Pebax® 2533/PVDF thin film MMMs mainly owing to the porous structure of MIL-GO-2, and the tortuous diffusion pathways created by GO nanosheets. MMMs containing 9.1 wt% MIL-GO-2 exhibited the highest CO(2) permeability equal to 303 barrer (1 barrer = 10(−10) cm(3) (STP) cm cm(−2) s(−1) cmHg(−1)) and the highest CO(2)/N(2) ideal selectivity equal to 24. Pebax-based MMMs containing composite fillers showed higher gas separation performance than the Pebax-based MMMs containing single filler (GO or MOFs). Therefore, the synthesis and utilization of 3D@2D composite filler demonstrated great potential in the preparation of high-performance MMMs for gas separation processes. The Royal Society of Chemistry 2022-10-12 /pmc/articles/PMC9555015/ /pubmed/36320736 http://dx.doi.org/10.1039/d2ra05095a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Guoqiang
Kujawski, Wojciech
Knozowska, Katarzyna
Kujawa, Joanna
Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title_full Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title_fullStr Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title_full_unstemmed Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title_short Pebax® 2533/PVDF thin film mixed matrix membranes containing MIL-101 (Fe)/GO composite for CO(2) capture
title_sort pebax® 2533/pvdf thin film mixed matrix membranes containing mil-101 (fe)/go composite for co(2) capture
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9555015/
https://www.ncbi.nlm.nih.gov/pubmed/36320736
http://dx.doi.org/10.1039/d2ra05095a
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