Molecular interactions between glycylglycine and Mn(COOCH3) 2 in aqueous and aqueous ethanol mixtures

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2011

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Abstract

This paper reports the variations of different physical and thermodynamic properties of a mixture of dipeptide-metal salt in aqueous solutions as well as in aqueous ethanol mixtures. Specifically, the apparent molar volumes and apparent molar compressibilities of glycylglycine and Mn(COOCH<inf>3</inf>) <inf>2</inf> have been determined at T = (288.15 to 318.15) K, and the resulting data have been used to estimate the limiting volume (?0 <inf>V</inf>) and compressibility (?0<inf>K</inf>). Their concentration variations are examined to study the effect due to solute-solute and solvent-solvent interactions. The resulting data have been used to interpret the volume and compressibility contributions of the components in terms of H-bonding and dipole-dipole interactions. It was found that these interactions in aqueous solutions were measurably distinct in some cases from those in alcohols. An unusual behavior in the refractive index values indicates a measure of the relative extent of the polar domains. © 2009 American Chemical Society.

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Apparent molar compressibility, Apparent Molar volume, Aqueous ethanol, Aqueous solutions, Concentration variation, Dipeptide, Dipole dipole interactions, Glycyl-glycine, H-bonding, Metal salt, Solvent-solvent interactions, Ethanol, Manganese, Refractive index, Solutions, Thermodynamic properties, Compressibility

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Journal of Chemical and Engineering Data, 2011, 56, 4, pp. 768-782

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