Despite the outstanding chemical, thermal and transport properties of amorphous and glassy perfluorinated polymers, only few works exist on the preparation and transport properties of perfluoropolymer/molecular sieves mixed-matrix membranes (MMMs), probably because of their poor compatibility. In this review, the compatibilization of ceramic molecular sieves with perfluorinated matrices is considered first, examining the effect of the surface treatment on the gas transport properties of the filler. Then the preparation of the defect-free hybrid membranes and their gas separation capabilities are described. Finally, recent modelling of the gas transport properties of the perfluoropolymer MMMs is reviewed. The systematic use of molecular siev...
The vapor transport properties of nanocomposite materials obtained with different techniques and bas...
We investigate permeation in non-ideal mixed-matrix membranes (MMMs) having interfacial defects base...
This study deals with Polyethersulfone (representative glassy polymer) and PEBAX-1657 (representativ...
In this study we analyzed and compared the vapor transport behavior into two different composites ba...
The effects of adding fumed silica (FS) nanoparticles on the gas permeability, solubility, diffusivi...
We extend the Maxwell-Stefan (M-S) formulation of irreversible thermodynamics to multicomponent tran...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
Three types of inorganic fillers – fumed nonporous nano-silica, synthesized mesoporous MCM-41 and mi...
Zeolite 4A was incorporated into poly(vinylidene fluoride) (PVDF) matrix to prepare mixed matrix mem...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nanoparticl...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
Novel mixed matrix membranes (MMMs) were prepared using Matrimid (M), polysulfone (PSF) or polypheny...
The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 results i...
Mixed Matrix type membranes (MMMs) containing 10 wt% of either silicalite, SAPO - 34, and ZIF - 8 in...
The vapor transport properties of nanocomposite materials obtained with different techniques and bas...
We investigate permeation in non-ideal mixed-matrix membranes (MMMs) having interfacial defects base...
This study deals with Polyethersulfone (representative glassy polymer) and PEBAX-1657 (representativ...
In this study we analyzed and compared the vapor transport behavior into two different composites ba...
The effects of adding fumed silica (FS) nanoparticles on the gas permeability, solubility, diffusivi...
We extend the Maxwell-Stefan (M-S) formulation of irreversible thermodynamics to multicomponent tran...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
Three types of inorganic fillers – fumed nonporous nano-silica, synthesized mesoporous MCM-41 and mi...
Zeolite 4A was incorporated into poly(vinylidene fluoride) (PVDF) matrix to prepare mixed matrix mem...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nanoparticl...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
Novel mixed matrix membranes (MMMs) were prepared using Matrimid (M), polysulfone (PSF) or polypheny...
The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 results i...
Mixed Matrix type membranes (MMMs) containing 10 wt% of either silicalite, SAPO - 34, and ZIF - 8 in...
The vapor transport properties of nanocomposite materials obtained with different techniques and bas...
We investigate permeation in non-ideal mixed-matrix membranes (MMMs) having interfacial defects base...
This study deals with Polyethersulfone (representative glassy polymer) and PEBAX-1657 (representativ...