2015
DOI: 10.1016/j.memsci.2015.07.009
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Comparison between hydrophilic and hydrophobic metal nanoparticles on the phase separation phenomena during formation of asymmetric polyethersulphone membranes

Abstract: ElsevierGarcía Ivars, J.; Iborra Clar, MI.; Alcaina Miranda, MI.; Van Der Bruggen, B. (2015). Comparison between hydrophilic and hydrophobic metal nanoparticles on the phase separation phenomena during formation of asymmetric polyethersulphone membranes. ABSTRACTInorganic nanoparticles have been applied as additive in membrane synthesis for improving different properties from the base polymer such as hydrophilicity, fouling resistance or permselectivity. To investigate the changes caused by the presence of th… Show more

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Cited by 61 publications
(39 citation statements)
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References 67 publications
(76 reference statements)
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“…Consequently, the polymer-reach phase produces the thin film and the formation of nuclei of a polymer-poor phase form the porous structure 42 . The formation of finger like pores in sub-layer is the result of a longer exchange between solvent and non-solvent in polymer poor phase follows the increase of solution viscosity which cause a delayed precipitation of the polymer and then, a decrease in the diffusion rate of water into the polymer film 43,44 .…”
Section: Membrane Morphologymentioning
confidence: 99%
“…Consequently, the polymer-reach phase produces the thin film and the formation of nuclei of a polymer-poor phase form the porous structure 42 . The formation of finger like pores in sub-layer is the result of a longer exchange between solvent and non-solvent in polymer poor phase follows the increase of solution viscosity which cause a delayed precipitation of the polymer and then, a decrease in the diffusion rate of water into the polymer film 43,44 .…”
Section: Membrane Morphologymentioning
confidence: 99%
“…This is mainly attribute to the fact that GO offers a strong affinity to water molecules, inducing the faster formation of figure-like structure in the hybrid membranes, which also can be confirmed from the increasing porosity of PVC/GO hybrid membranes modified by increasing load of GO (see Table 1) [44]. …”
Section: Membrane Microstructure Analysismentioning
confidence: 66%
“…6. Generally, the incorporation of GO has the significant impact on both thermodynamic and kinetic properties of the PVC/DMAC/water system, even though at low fraction of added GO nanoflakes [44]. As seen from Fig.…”
Section: Membrane Microstructure Analysismentioning
confidence: 84%
“…Experimental and theoretical studies of thermodynamics based on Flory-Huggins theory have been undertaken extensively for cellulose acetate and its derivatives [1][2][3][4], polysulfone [5,6], polyethersulfone [5][6][7][8], and polyacrylonitrile [9]. Data derived from thermodynamic model are used to predict the kinetic pathway during phase inversion [9].…”
Section: Introductionmentioning
confidence: 99%