Small molecule probe diffusion in thin and ultrathin supported polymer films

Citation
Db. Hall et Jm. Torkelson, Small molecule probe diffusion in thin and ultrathin supported polymer films, MACROMOLEC, 31(25), 1998, pp. 8817-8825
Citations number
69
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
MACROMOLECULES
ISSN journal
00249297 → ACNP
Volume
31
Issue
25
Year of publication
1998
Pages
8817 - 8825
Database
ISI
SICI code
0024-9297(199812)31:25<8817:SMPDIT>2.0.ZU;2-U
Abstract
The translational diffusion of two small molecule probes, decacyclene and l ophine, has been studied in supported polymer films as a function of film t hickness using fluorescence nonradiative energy transfer. These probes are sufficiently large that their translational motion is coupled substantially to the segmental mobility of the polymer matrix. Probe diffusion in polyst yrene films on fused quartz substrates was found to slow as film thickness is decreased below approximately 150 nm. In contrast, no change in probe di ffusion as compared to bulk values was found in poly(isobutyl methacrylate) films as thin as 50 nm and poly(2-vinylpyridine) films as thin as 88 nm. T hese differences cannot be explained in terms of differences in polymer aff inity for the fused quartz substrate, indicating that polymer-substrate aff inity does not influence probe diffusion in this Nm thickness range. Probe diffusion toward polymer-substrate and polymer-free surface interfaces has also been studied with little change in diffusive behavior as compared to b ulk in regions as close as 40 nm from the interface. This indicates that th e range of influence of a particular polymer-free surface or polymer-substr ate interaction is of limited extent ((40 nm distance) in modifying thin an d ultrathin behavior.