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    AuthorJalal, Taghreed (1)
    Nunes, Suzana Pereira (1)
    Tayouo Djinsu, Russell (1)DepartmentAdvanced Membranes and Porous Materials Research Center (1)Biological and Environmental Sciences and Engineering (BESE) Division (1)Chemical and Biological Engineering Program (1)Environmental Science and Engineering Program (1)Nanostructured Polymeric Membrane Lab (1)View MoreJournalReactive and Functional Polymers (1)KAUST Acknowledged Support Unit
    Analytical and Imaging Core Lab (1)
    KAUST-Cornell Center (1)KAUST Grant NumberKUS-C1-018-2 (1)PublisherElsevier BV (1)SubjectFunctionalization (1)Membranes (1)Poly (ether imide sulfone) (1)Ultrafiltration (1)View MoreTypeArticle (1)Year (Issue Date)
    2014 (1)
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    Metadata Only (1)

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    Reactive phase inversion for manufacture of asymmetric poly (ether imide sulfone) membranes

    Jalal, Taghreed; Charry Prada, Iran David; Tayouo Djinsu, Russell; Giannelis, Emmanuel P.; Nunes, Suzana Pereira (Reactive and Functional Polymers, Elsevier BV, 2014-12) [Article]
    Poly (ether imide sulfone) membranes were manufactured by combining phase inversion and functionalization reaction between epoxy groups and amine modified polyether oligomers (Jeffamine) or TiO2 nanoparticles. Polysilsesquioxanes containing epoxy functionalities were in-situ grown in the casting solution and made available for further reaction with amines in the coagulation/annealing baths. The membranes were characterized by field emission scanning electron microscopy, porosimetry and water flux measurements. Water permeances up to 1500 l m-2 h-1 bar-1 were obtained with sharp pore size distribution and a pore diameter peak at 66 nm, confirmed by porosimetry, which allowed 99.2% rejection of γ-globulin. Water flux recovery of 77.5% was achieved after filtration with proteins. The membranes were stable in 50:50 dimethylformamide/water, 50:50 N-methyl pyrrolidone/water and 100% tetrahydrofuran. The possibility of using similar concept for homogeneous and stable attachment of nanoparticles on the membrane surface was demonstrated.
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