Published March 2015 | Version v1
Journal article

Conductivity and fluorescence studies on the micellization properties of sodium cholate and sodium deoxycholate in aqueous medium at different temperatures: Effect of selected amino acids

  • 1. Department of Chemistry, Himachal Pradesh University, Summer Hill, Shimla 171005, Himachal Pradesh (India)
  • 2. Department of Chemistry, BTC DAV College Banikhet (Dalhousie), Chamba 176310, Himachal Pradesh (India)

Description

Graphical abstract: - Highlights: • Micellization of (NaC/NaDC + amino acid) system has been investigated by conductivity and fluorescence probe studies. • Leucine has advanced the micellization predominantly among all amino acids. • Both types of hydrations have governed the temperature dependence of CMC values. • Micellization of NaDC is found to be more entropy controlled than that of NaC. • (Enthalpy + entropy) compensation phenomenon has been observed. - Abstract: In order to add to the existing knowledge of aqueous solution behavior of bile salts in presence of amino acids, the micellization properties of sodium cholate (NaC) (1 to 20) mmol · kg−1, and sodium deoxycholate (NaDC) (0.5 to 10) mmol · kg−1 in 0.1 mol · kg−1 aqueous solution of glycine, leucine, methionine, and histidine have been investigated at different temperatures (293.15 to 318.15) K at intervals of T = 5 K by using conductivity and fluorescence probe studies. The critical micelle concentration (CMC) values have been determined and elucidated in terms of hydrophobicity as well as hydrophilicity of NaC and NaDC in aqueous solution of these additives. Thermodynamic parameters of micellization viz. standard Gibbs free energy (ΔmicGo), standard enthalpy (ΔmicHo), and standard entropy (ΔmicSo) have also been calculated to extract information regarding the nature of micellization of bile salts in aqueous solutions. The (enthalpy + entropy) compensation plots have been interpreted to the contribution of chemical part towards micellization or stability of the micelle formed

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jct.2014.10.014

Additional details

Identifiers

DOI
10.1016/j.jct.2014.10.014;
PII
S0021-9614(14)00333-4;

Publishing Information

Journal Title
Journal of Chemical Thermodynamics
Journal Volume
82
Journal Page Range
p. 25-33
ISSN
0021-9614
CODEN
JCTDAF

Optional Information

Copyright
Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.