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Study of influence of ionic additives to AOT reverse microemulsions by liquid chromatography, IR and UV–visible spectroscopy

To create your abstract, type over the instructions in the template box below. Fonts or abstract dimensions should not be changed or altered. •Binding constants of o-NA with AOT reverse micelles are higher in the presence of acetate ions.•Retention factors of solutes in reverse micellar chromatograp...

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Bibliographic Details
Published in:Colloids and surfaces. A, Physicochemical and engineering aspects Physicochemical and engineering aspects, 2014-02, Vol.442, p.98-104
Main Authors: T.Butkhuzi, Chaladze, R., Lominadze, N., Rukhadze, M., Gvaramia, M., M.Kurtanidze, Bezarashvili, G., Sigua, K.
Format: Article
Language:English
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Summary:To create your abstract, type over the instructions in the template box below. Fonts or abstract dimensions should not be changed or altered. •Binding constants of o-NA with AOT reverse micelles are higher in the presence of acetate ions.•Retention factors of solutes in reverse micellar chromatographic system are less in the presence of acetate.•Addition of salts results in the changes of ratio of the bound, free and trapped water fractions in the reverse micelles. Reverse micellar mobile phases based on sodium bis(2-ethylhexyl) sulfosuccinate (AOT) were used as mobile phases in HPLC. The chromatographic behavior of the model compounds was studied on the basis of reverse micellar mobile phases modified by salt additives. Structural changes of water pools of reverse micelles depending from AOT concentration in the presence or absence of structure-making and structure-breaking ions was investigated by IR-Spectroscopy. The OH stretching vibrational absorption spectra in the region of 3000–3800cm−1 were fitted into three subpeaks with a Monte Carlo method. The binding of o-nitroaniline (o-NA) to the micelles of AOT was determined by UV–visible spectroscopy. The different influence of kosmotropic and chaotropic anions on the binding constant Kb was revealed.
ISSN:0927-7757
1873-4359
DOI:10.1016/j.colsurfa.2013.03.001