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  4. Single-walled aluminosilicate nanotube/poly(vinyl alcohol) nanocomposite membranes
 
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Single-walled aluminosilicate nanotube/poly(vinyl alcohol) nanocomposite membranes

Journal
ACS Applied Materials and Interfaces
Journal Volume
4
Journal Issue
2
Pages
965-976
Date Issued
2012
Author(s)
Kang D.-Y.  
Tong H.M.
Zang J.
Choudhury R.P.
Sholl D.S.
Beckham H.W.
Jones C.W.
Nair S.
DOI
10.1021/am201614w
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/409797
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84857424154&doi=10.1021%2fam201614w&partnerID=40&md5=556d94922aa0d0f983b7ccb16a1dbc07
Abstract
The fabrication, detailed characterization, and molecular transport properties of nanocomposite membranes containing high fractions (up to 40 vol %) of individually-dispersed aluminosilicate single-walled nanotubes (SWNTs) in poly(vinyl alcohol) (PVA), are reported. The microstructure, SWNT dispersion, SWNT dimensions, and intertubular distances within the composite membranes are characterized by scanning and transmission electron microscopy (SEM and TEM), energy-dispersive spectroscopy (EDS), X-ray diffraction (XRD), XRD rocking curve analysis, small-angle X-ray scattering (SAXS), and solid-state NMR. PVA/SWNT nanocomposite membranes prepared from SWNT gels allow uniform dispersion of individual SWNTs in the PVA matrix with a random distribution of orientations. SAXS analysis reveals the length (?500 nm) and outer diameter (?2.2 nm) of the dispersed SWNTs. Electron microscopy indicates good adhesion between the SWNTs and the PVA matrix without the occurrence of defects such as voids and pinholes. The transport properties of the PVA/SWNT membranes are investigated experimentally by ethanol/water mixture pervaporation measurements, computationally by grand canonical Monte Carlo and molecular dynamics, and by a macroscopic transport model for anisotropic permeation through nanotube-polymer composite membranes. The nanocomposite membranes substantially enhance the water throughput with increasing SWNT volume fraction, which leads to a moderate reduction of the water/ethanol selectivity. The model is parameterized purely from molecular simulation data with no fitted parameters, and shows reasonably good agreement with the experimental water permeability data. ? 2012 American Chemical Society.
Subjects
membrane
metal oxide
nanocomposite
nanotube
separation
SDGs

[SDGs]SDG6

Type
journal article

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