The interaction between sodium alkyl sulfate surfactants and the oppositely charged polyelectrolyte, polyDMDAAC, at the air-water interface: the role of alkyl chain length and electrolyte and comparison with theoretical predictions.

Symplectic ID
10591
Source
PubMed
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Sunday, 13 September, 2026 - 12:20
DOI
10.1021/la063016x
Publication Date
Tuesday, 13 March, 2007
First Page
3128
Last Page
3136
Authors
Penfold, J
Tucker, I
Thomas, RK
Taylor, DJF
Zhang, XL
Bell, C
Breward, C
Howell, P
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Abstract
The effect of alkyl chain length and electrolyte on the adsorption of sodium alkyl sulfate surfactants and the oppositely charged polyelectrolyte, polyDMDAAC, at the air-water interface has been investigated by surface tension and neutron reflectivity. The variations in the patterns of adsorption and surface tension behavior with alkyl chain length and electrolyte are discussed in the context of the competition between the formation of surface active surfactant/polyelectrolyte complexes and polyelectrolyte/surfactant micelle complexes in solution. A theoretical approach based on the law of mass action has been used to predict the surface effects arising from the competition between the formation of polyelectrolyte/surfactant surface and solution complexes and the formation of free surfactant micelles. This relatively straightforward model is shown to reproduce the principal features of the experimental results.
ISSN
0743-7463
Journal Title
Langmuir
Volume
23
Issue
6
ID at Source
17249706
Publication Status
Published
Open access
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ptch0061,thomas,sann2227