4.7 Article

Studies of volumetric and activity behaviors of binary and ternary aqueous solutions containing β-cyclodextrin and glucose

Journal

JOURNAL OF MOLECULAR LIQUIDS
Volume 178, Issue -, Pages 185-191

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.molliq.2012.10.044

Keywords

beta-CD; Glucose; Activity and activity coefficients; Gibbs free energy of transfer; Hydrophobic interactions; Thermodynamic equilibrium constant

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Osmotic vapor pressure and density measurements have been carried-out for binary aqueous solutions of glucose and ternary aqueous solutions containing glucose and a fixed concentration of beta-cyclodextrin (beta-CD) [0.01262 mol kg(-1)] using techniques of vapor pressure osmometer and digital densitometer at 298.15 K. The measured water activities were used to estimate the activity coefficients and free energy changes in the binary system. The activity data of binary aqueous glucose solutions are further used to obtain the hydration number of glucose. The free energy change shows that at low concentration glucose forms almost an ideal solution in water. In ternary solutions the activity coefficient and transfer free energies of beta-CD and glucose are studied as a function of concentration of glucose. Using earlier reported data for binary aqueous beta-CD system and these newly studied systems, transfer free energies of beta-CD from aqueous to aqueous glucose solutions are determined. These results are further subjected to McMillan-Mayer theory of solutions which yield the value of thermodynamic equilibrium constant (K) for beta-CD glucose complex in aqueous solutions after evaluation of salting constant and pair and triplet interaction parameters. It has been found that log K values are positive and high. These results are discussed in terms of hydrogen bonding, replacement of water molecules from beta-CD cavity and solute-solute association equilibria involving pair and triplet interactions. (C) 2012 Elsevier B.V. All rights reserved.

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