Literature DB >> 23070078

Metal-organic frameworks in mixed-matrix membranes for gas separation.

Harold B Tanh Jeazet1, Claudia Staudt, Christoph Janiak.   

Abstract

Mixed-matrix membranes (MMMs) with metal-organic frameworks (MOFs) as additives (fillers) exhibit enhanced gas permeabilities and possibly also selectivities when compared to the pure polymer. Polyimides (Matrimid®) and polysulfones are popular polymer matrices for MOF fillers. Presently investigated MOFs for MMMs include [Cu(SiF(6))(4,4'-BIPY)(2)], [Cu(3)(BTC)(2)(H(2)O)(3)] (HKUST-1, Cu-BTC), [Cu(BDC)(DMF)], [Zn(4)O(BDC)(3)] (MOF-5), [Zn(2-methylimidazolate)(2)] (ZIF-8), [Zn(purinate)(2)] (ZIF-20), [Zn(2-carboxyaldehyde imidazolate)(2)] (ZIF-90), Mn(HCOO)(2), [Al(BDC)(μ-OH)] (MIL-53(Al)), [Al(NH(2)-BDC)(μ-OH)] (NH(2)-MIL-53(Al)) and [Cr(3)O(BDC)(3)(F,OH)(H(2)O)(2)] (MIL-101) (4,4'-BIPY = 4,4'-bipyridine, BTC = benzene-1,3,5-tricarboxylate, BDC = benzene-1,4-dicarboxylate, terephthalate). MOF particle adhesion to polyimide and polysulfone organic polymers does not represent a problem. MOF-polymer MMMs are investigated for the permeability of the single gases H(2), N(2), O(2), CH(4), CO(2) and of the gas mixtures O(2)/N(2), H(2)/CH(4), CO(2)/CH(4), H(2)/CO(2), CH(4)/N(2) and CO(2)/N(2) (preferentially permeating gas named first). Permeability increases can be traced to the MOF porosity. Since the porosity of MOFs can be tuned very precisely, which is not possible with polymeric material, MMMs offer the opportunity of significantly increasing the selectivity compared to the pure polymeric matrix. Additionally in most of the cases the permeability is increased for MMM membranes compared to the pure polymer. Addition of MOFs to polymers in MMMs easily yields performances similar to the best polymer membranes and gives higher selectivities than those reported to date for any pure MOF membrane for the same gas separation. MOF-polymer MMMs allow for easier synthesis and handability compared to pure MOF membranes.

Entities:  

Year:  2012        PMID: 23070078     DOI: 10.1039/c2dt31550e

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  20 in total

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Review 2.  Structures, Properties, and Performances-Relationships of Polymeric Membranes for Pervaporative Desalination.

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3.  Activation performance and mechanism of a novel heterogeneous persulfate catalyst: Metal Organic Framework MIL-53(Fe) with FeII/FeIII mixed-valence coordinative unsaturated iron center.

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5.  Metal-organic framework based mixed matrix membranes: a solution for highly efficient CO2 capture?

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6.  Correlation of Gas Permeability in a Metal-Organic Framework MIL-101(Cr)-Polysulfone Mixed-Matrix Membrane with Free Volume Measurements by Positron Annihilation Lifetime Spectroscopy (PALS).

Authors:  Harold B Tanh Jeazet; Tönjes Koschine; Claudia Staudt; Klaus Raetzke; Christoph Janiak
Journal:  Membranes (Basel)       Date:  2013-10-25

7.  Post-synthetic Ti exchanged UiO-66 metal-organic frameworks that deliver exceptional gas permeability in mixed matrix membranes.

Authors:  Stefan J D Smith; Bradley P Ladewig; Anita J Hill; Cher Hon Lau; Matthew R Hill
Journal:  Sci Rep       Date:  2015-01-16       Impact factor: 4.379

8.  Metal Organic Framework Crystals in Mixed-Matrix Membranes: Impact of the Filler Morphology on the Gas Separation Performance.

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Journal:  Adv Funct Mater       Date:  2016-05-10       Impact factor: 18.808

9.  Protecting metal-organic framework crystals from hydrolytic degradation by spray-dry encapsulating them into polystyrene microspheres.

Authors:  Arnau Carné-Sánchez; Kyriakos C Stylianou; Carlos Carbonell; Majid Naderi; Inhar Imaz; Daniel Maspoch
Journal:  Adv Mater       Date:  2014-12-10       Impact factor: 30.849

10.  Crystal structure of 4,4'-bipyridine-1,1'-diium naphthalene-2,6-di-sulfonate dihydrate.

Authors:  Sabri Cevik; Musa Sarı; Murat Sarı; Tuncay Tunç
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2014-08-09
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