In-situ growth of ZIF-8 in amphiphilic graft copolymer for mixed matrix membranes with simultaneous improvement of permeability and selectivity
[Display omitted] •In-situ growth of ZIF-8 nanoparticles within an amphiphilic graft copolymer matrix.•Simultaneous improvement of permeability and selectivity was achieved.•The performance is much better than that of conventional MMMs with pre-synthesized ZIF-8. The fabrication process of mixed mat...
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Veröffentlicht in: | Separation and purification technology 2020-12, Vol.253, p.117514, Article 117514 |
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Sprache: | eng |
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•In-situ growth of ZIF-8 nanoparticles within an amphiphilic graft copolymer matrix.•Simultaneous improvement of permeability and selectivity was achieved.•The performance is much better than that of conventional MMMs with pre-synthesized ZIF-8.
The fabrication process of mixed matrix membranes (MMMs) typically involves the solution mixing of pre-synthesized fillers and polymer matrix; however, its application is limited by poor dispersion of fillers and interfacial adhesion. Herein, we report the preparation of high-performance MMMs based on the in-situ growth of ZIF-8 nanoparticles within an amphiphilic graft copolymer matrix, poly(vinyl chloride)-graft-poly(oxyethylene methacrylate) (PVC-g-POEM). The process involves the formation of PVC-g-POEM/Zn(NO3)2 complex membranes, followed by their immersion into 2-methylimidazole (2MI) organic linker solution. Zn2+ ions have strong coordination interactions with the hydrophilic POEM domains, resulting in a reduced free volume and decreased gas permeability. Upon the infiltration of MI, the ZIF-8 nanoparticles are in-situ grown in the matrix, resulting in the simultaneous improvement of permeability and selectivity. The in-situ grown MMM with 28.7% loading shows a high CO2 permeability of 244.9 Barrer, CO2/N2 selectivity of 39.3, and CO2/CH4 selectivity of 14.0. This performance is much better than those of pristine PVC-g-POEM and conventional MMMs with pre-synthesized ZIF-8. This novel in-situ approach will encourage the development of next generation MMMs. |
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ISSN: | 1383-5866 1873-3794 |
DOI: | 10.1016/j.seppur.2020.117514 |