The enhancement of gas and vapor transport rates induced by the addition of fumed silica nanoparticles to fluorinated glassy polymers is interpreted and quantitatively modeled considering the additional free volume created by incorporation of filler. That effect can be evaluated accurately from gas solubility data, using the NELF model. The solubility of CH4 and CO2 in matrices of Teflon AF1600 and AF2400, filled with variable amounts of fumed silica nanoparticles, was measured at 35 °C; the solubility of n-C4 and n-C5 vapors, as well as their diffusivity and the dilation induced in the same polymer matrices, was also measured at 25 °C. The fractional free volume (FFV) values, estimated on the basis of CH4 solubility data, were used to pr...
The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 results i...
none2The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 resu...
The transport properties of two organic vapors in mixed matrix membranes based on amorphous Teflon® ...
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...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
none4The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to gl...
The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to glassy ...
The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to glassy ...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 results i...
none2The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 resu...
The transport properties of two organic vapors in mixed matrix membranes based on amorphous Teflon® ...
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...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
The enhancement of gas and vapor transport rates induced by the addition of fumed silica nano-partic...
none4The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to gl...
The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to glassy ...
The enhancement of gas diffusivity observed after addition of fumed silica nano-particles to glassy ...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The solubility of gases (CO2, CH4) and vapors (n-C4, n-C5) in Mixed Matrix Membranes (MMM) based on...
The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 results i...
none2The addition of fumed silica particles to glassy polymers such as PTMSP and Teflon AF 2400 resu...
The transport properties of two organic vapors in mixed matrix membranes based on amorphous Teflon® ...