Title of article :
Molecular dynamics simulation of diffusion and permeation of gases in polystyrene
Author/Authors :
Mozaffari، نويسنده , , Farkhondeh and Eslami، نويسنده , , Hossein and Moghadasi، نويسنده , , Jalil، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2010
Pages :
8
From page :
300
To page :
307
Abstract :
Molecular dynamics simulations are performed to study the diffusion and permeation of gases, including argon, nitrogen, methane, carbon dioxide, and propane, in polystyrene over a wide range of temperatures. A jumping mechanism is observed for the diffusion of diffusants in polymer. The calculated diffusion coefficients agree well with the experimental data and with the results of former simulation studies. The relation between the diffusion coefficient and the molecular diameter is confirmed by the results. Our calculated results on the temperature-dependence of diffusion coefficients show that for some gases a break is seen, at the glass transition temperature, in the Arrhenius plot of ln (D) versus 1/T, while for some other light gases, argon and nitrogen, the plot is linear over the whole temperature range. We have also calculated the permeability coefficients, using the diffusion coefficients calculated in this work and our recently published solubility coefficients [Eslami and Müller-Plathe, Macromolecules 2007; 40:6413]. Our results show that the calculated permeability coefficients are higher than the experimental data by almost the same trend observed in the solubility calculations, but the ratios of calculated permeabilities are in a very good agreement with experiment.
Keywords :
Diffusion coefficient , Molecular dynamics simulations , permeation
Journal title :
Polymer
Serial Year :
2010
Journal title :
Polymer
Record number :
1734017
Link To Document :
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