• Media type: E-Article
  • Title: Multifunctional nanocomposite hollow fiber membranes by solvent transfer induced phase separation
  • Contributor: Haase, Martin F.; Jeon, Harim; Hough, Noah; Kim, Jong Hak; Stebe, Kathleen J.; Lee, Daeyeon
  • imprint: Springer Science and Business Media LLC, 2017
  • Published in: Nature Communications
  • Language: English
  • DOI: 10.1038/s41467-017-01409-3
  • ISSN: 2041-1723
  • Keywords: General Physics and Astronomy ; General Biochemistry, Genetics and Molecular Biology ; General Chemistry ; Multidisciplinary
  • Origination:
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  • Description: <jats:title>Abstract</jats:title><jats:p>The decoration of porous membranes with a dense layer of nanoparticles imparts useful functionality and can enhance membrane separation and anti-fouling properties. However, manufacturing of nanoparticle-coated membranes requires multiple steps and tedious processing. Here, we introduce a facile single-step method in which bicontinuous interfacially jammed emulsions are used to form nanoparticle-functionalized hollow fiber membranes. The resulting nanocomposite membranes prepared via solvent transfer-induced phase separation and photopolymerization have exceptionally high nanoparticle loadings (up to 50 wt% silica nanoparticles) and feature densely packed nanoparticles uniformly distributed over the entire membrane surfaces. These structurally well-defined, asymmetric membranes facilitate control over membrane flux and selectivity, enable the formation of stimuli responsive hydrogel nanocomposite membranes, and can be easily modified to introduce antifouling features. This approach forms a foundation for the formation of advanced nanocomposite membranes comprising diverse building blocks with potential applications in water treatment, industrial separations and as catalytic membrane reactors.</jats:p>
  • Access State: Open Access