The behaviourofablock co-poly(ether/amide)80PTMO/PA12(PEBAX)membraneblendedwithan amphiphilicfiller, N-ethyl-o/p-toluenesulphonamide(KET),wasstudiedbothexperimentallyand theoreticallyinordertoidentifytheaffinity,themiscibilityandtheeffectivedistributionand arrangementofKETmoleculesandthemechanismcontrollingwaterinteractionsondifferentlength scales,frommacrotonano.Bothmethodshavealsobeenusedtoestablishtheroleofmolecular rearrangementandclusterizationphenomenaofmodifiersinpackedmembranes,andtorelatethisto the macroscopicaffinitybehaviour.ThecompatibilitybetweenKETandPEBAXandthepresenceof nanoclustersofKETinsidethematrixhavebeenstudiedatmolecularlevelthroughmodelling, calorimetryandinfraredspectroscopyanalyses.Agoodmiscibilityhasbeenobservedupto50wt% of modifiercontentbutwithdiscrepancieswhenKETisat70wt%,confirmingasaturationof hydrophilicsitesofthefiller,resultinginareducedaffinityofthemembranestopolarpenetrant.An integratedexperimental-theoreticalapproachhasprovidedamoredetailedinvestigationofthree- componentcomplexsystems,inwhichthemacroscopicpropertiesandmorphologiesaredetermined by interactionsinthenano-scalerange,thusresultinginareciprocalvalidationandusefulcorrelations betweenMDandexperimentalanalysis.

Assembly of nanocomposite PEBAX membranes: A complementary study of affinity and clusterization phenomena

Tocci E;Gugliuzza A;Drioli;
2012

Abstract

The behaviourofablock co-poly(ether/amide)80PTMO/PA12(PEBAX)membraneblendedwithan amphiphilicfiller, N-ethyl-o/p-toluenesulphonamide(KET),wasstudiedbothexperimentallyand theoreticallyinordertoidentifytheaffinity,themiscibilityandtheeffectivedistributionand arrangementofKETmoleculesandthemechanismcontrollingwaterinteractionsondifferentlength scales,frommacrotonano.Bothmethodshavealsobeenusedtoestablishtheroleofmolecular rearrangementandclusterizationphenomenaofmodifiersinpackedmembranes,andtorelatethisto the macroscopicaffinitybehaviour.ThecompatibilitybetweenKETandPEBAXandthepresenceof nanoclustersofKETinsidethematrixhavebeenstudiedatmolecularlevelthroughmodelling, calorimetryandinfraredspectroscopyanalyses.Agoodmiscibilityhasbeenobservedupto50wt% of modifiercontentbutwithdiscrepancieswhenKETisat70wt%,confirmingasaturationof hydrophilicsitesofthefiller,resultinginareducedaffinityofthemembranestopolarpenetrant.An integratedexperimental-theoreticalapproachhasprovidedamoredetailedinvestigationofthree- componentcomplexsystems,inwhichthemacroscopicpropertiesandmorphologiesaredetermined by interactionsinthenano-scalerange,thusresultinginareciprocalvalidationandusefulcorrelations betweenMDandexperimentalanalysis.
2012
Istituto per la Tecnologia delle Membrane - ITM
Inglese
421-422
1
75
84
http://www.sciencedirect.com/science/article/pii/S0376738812005091
Sì, ma tipo non specificato
PEBAX
Filler
Nanocomposite membranes
MD simulations
5
info:eu-repo/semantics/article
262
De Lorenzo, L; Tocci, E; Gugliuzza, A; Drioli, Enrico; E,
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Setting up research intensive clusters across the EU on characterization of polymer nanostructures
   NAPOLYNET
   FP7
   218331

   Computer aided molecular design of multifunctional materials with controlled permeability properties
   MULTIMATDESIGN
   FP6
   13644
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/12376
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