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Erschienen in: Colloid and Polymer Science 2/2011

01.01.2011 | Original Contribution

Bile salt structural effect on the thermodynamic properties of a catanionic mixed adsorbed monolayer

verfasst von: Marcos D. Fernández-Leyes, Paula V. Messina, Pablo C. Schulz

Erschienen in: Colloid and Polymer Science | Ausgabe 2/2011

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Abstract

The interfacial effects of two bile salts (sodium deoxycholate (NaDC) and sodium dehydrocholate (NaDHC)) in a catanionic mixed adsorbed monolayer have been investigated at 25 °C. The surfactant interfacial composition, the interfacial orientation of the molecules and the energy changes are analysed to show a thermodynamic evidence of the hydrophobic BSs effect during its intercalation into interfacial adsorbed didodecyldimethyl ammonium bromide (DDAB) molecules. Both mixed systems (NaDC–DDAB and NaDHC–DDAB) have analogous adsorption efficiencies, which are similar from a pure DDAB monolayer and superior to that obtained for both bile salts molecules. Nevertheless, their adsorption effectiveness is different: NaDC causes an increment of Γ while NaDHC produces the opposite effect. The adsorption efficiency in surface tension reduction is due to the existence of interfacial synergistic interactions (confirmed by the analysis of β γ and ΔG ad 0 values). Maximum synergistic interaction is seen for α BSs = 0.4. The hydrophobic steroid backbone of NaDHC molecule presents a deep interfacial penetration than NaDC. This fact causes a great disturbance of DDAB hydrocarbon tails and conduces to a large separation of molecules (high A m values) which explains the reduction of adsorption effectiveness (low Γ m values).

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Metadaten
Titel
Bile salt structural effect on the thermodynamic properties of a catanionic mixed adsorbed monolayer
verfasst von
Marcos D. Fernández-Leyes
Paula V. Messina
Pablo C. Schulz
Publikationsdatum
01.01.2011
Verlag
Springer-Verlag
Erschienen in
Colloid and Polymer Science / Ausgabe 2/2011
Print ISSN: 0303-402X
Elektronische ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-010-2336-1

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