This item is licensed Korea Open Government License
dc.contributor.author
이혁재
dc.contributor.author
이혁재
dc.date.accessioned
2019-08-28T07:40:29Z
dc.date.available
2019-08-28T07:40:29Z
dc.date.issued
2006-06-29
dc.identifier.issn
1089-5647
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/13622
dc.description.abstract
Glassy, disubstituted acetylene-based polymers exhibit extremely high gas permeabilities and high vapor/gas selectivities, which is quite unusual for conventional glassy polymers such as polysulfone. Diffusion coefficients of poly[1-phenyl-2-[p-(trimethylsilyl)phenyl]acetylene] (PTMSDPA) and poly[diphenylacetylene] (PDPA) were
obtained using both molecular simulation and experimental techniques. PTMSDPA, a disubstituted glassy acetylene-based polymer, exhibits higher diffusivity than its desilylated analogue, PDPA. Simulation results are in good agreement with experimental data. Cavity size (free volume) distributions of both polymers are also obtained using an energetic-based algorithm (in’t Veld et al., J. Phys. Chem. B 2000, 104, 12028) developed
recently. Larger cavities in PTMSDPA contribute to its higher diffusivity, and higher permeability.
dc.language
eng
dc.relation.ispartofseries
The journal of physical chemistry. B, Materials, surfaces, interfaces & biophysical
dc.title
Molecular Simulation and Experimental Study of Substituted Polyacetylenes: Fractional Free Volume, Cavity Size Distributions and Diffusion Coefficients