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Persistent URL
http://purl.org/net/epubs/work/64495
Record Status
Checked
Record Id
64495
Title
Testing the Scaling Behavior of Microemulsion-Polymer Mixtures
Contributors
KJ Mutch (Bristol U.)
,
JS van Duijneveldt (Bristol U.)
,
J Eastoe (Bristol U.)
,
I Grillo (Institut Max-Von-Laue-Paul-Langevin)
,
RK Heenan (STFC Rutherford Appleton Lab.)
Abstract
The phase behavior and structural properties of “protein limit” mixtures of small (radius 20?30 Å) water-in-oil microemulsion droplets (colloids) and large (radius 130?580 Å) nonadsorbing polymer chains have been investigated. Accepted theoretical scaling relations for describing correlations have been applied and do not account fully for the observations; solvency effects may account for the deviations. The polymer/colloid size ratio has been varied from around 4 to 19 by using three different molecular weights of polyisoprene. Small-angle neutron scattering (SANS) has been used to determine partial structure factors (PSF) through contrast variation. The structure factors describing colloid?colloid interactions for the three polymers at fixed polymer concentration are shown to exhibit the same scaling behavior as the phase boundaries, provided that samples are sufficiently far from the demixing phase transition. The structure factors show a dramatic increase at low wavevectors on approaching the phase boundary, and behavior in this region does not obey expected scaling relations. By calculating effective polymer Flory?Huggins parameters, the effect of apparent solvent properties on adding microemulsion are shown to be less dramatic for the higher molecular weight polymers. This study extends previous work carried out on microemulsion-polymer mixtures (Langmuir 2008, 24, 3053?3060).
Organisation
ISIS
,
ISIS-ILL
,
STFC
Keywords
Funding Information
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Language
English (EN)
Type
Details
URI(s)
Local file(s)
Year
Journal Article
Langmuir
25, no. 7 (2008): 3944-3952.
doi:10.1021/la802488f
2008
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