Literature DB >> 30856683

Mixed-Matrix Membranes Formed from Multi-Dimensional Metal-Organic Frameworks for Enhanced Gas Transport and Plasticization Resistance.

Won Seok Chi1, Benjamin J Sundell2, Ke Zhang2, Daniel J Harrigan2, Steven C Hayden2, Zachary P Smith1.   

Abstract

Mixed-matrix membranes (MMMs) formed by incorporating metal-organic frameworks (MOFs) into polymers have a general limitation in that the MOFs are typically formed into rather simple dimensionalities (such as 1D, 2D, or 3D). Each design approach has intrinsic-albeit independent-benefits, such as network percolation (1D), access to high-aspect ratios (2D), and ease of processability (3D). However, a design strategy is needed to combine multiple dimensionalities and, thereby, access the full range of transport and compositing benefits of these high-performance materials. Herein, a facile method to form multi-dimensional HKUST-1 nanoparticles is introduced by using a modulator to tune the MOF nucleation and growth mechanism. At 30 wt % multidimensional MOF loading, the MMM shows CO2 permeabilities of approximately 2500 Barrer, which represents a 2.5-fold increase compared to that of a pure polymer without a large loss of selectivity for CO2 /CH4 and CO2 /N2 . Additionally, almost no plasticization pressure response is observed for CO2 up to 750 psi, suggesting an unusual stability to high activity feeds.
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  HKUST-1; gas separation; metal-organic framework; mixed-matrix membranes; plasticization

Year:  2019        PMID: 30856683     DOI: 10.1002/cssc.201900623

Source DB:  PubMed          Journal:  ChemSusChem        ISSN: 1864-5631            Impact factor:   8.928


  4 in total

Review 1.  Metal Organic Framework - Based Mixed Matrix Membranes for Carbon Dioxide Separation: Recent Advances and Future Directions.

Authors:  Vengatesan Muthukumaraswamy Rangaraj; Mohammad A Wahab; K Suresh Kumar Reddy; George Kakosimos; Omnya Abdalla; Evangelos P Favvas; Donald Reinalda; Frank Geuzebroek; Ahmed Abdala; Georgios N Karanikolos
Journal:  Front Chem       Date:  2020-07-03       Impact factor: 5.221

2.  Modelling the Molecular Permeation through Mixed-Matrix Membranes Incorporating Tubular Fillers.

Authors:  Ali Zamani; F Handan Tezel; Jules Thibault
Journal:  Membranes (Basel)       Date:  2021-01-14

3.  Enhancing the Separation Performance of Glassy PPO with the Addition of a Molecular Sieve (ZIF-8): Gas Transport at Various Temperatures.

Authors:  Francesco M Benedetti; Maria Grazia De Angelis; Micaela Degli Esposti; Paola Fabbri; Alice Masili; Alessandro Orsini; Alberto Pettinau
Journal:  Membranes (Basel)       Date:  2020-03-27

4.  Mixed Matrix Membranes Based on Torlon® and ZIF-8 for High-Temperature, Size-Selective Gas Separations.

Authors:  Matilde De Pascale; Francesco Maria Benedetti; Elsa Lasseuguette; Maria-Chiara Ferrari; Kseniya Papchenko; Micaela Degli Esposti; Paola Fabbri; Maria Grazia De Angelis
Journal:  Membranes (Basel)       Date:  2021-12-15
  4 in total

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