ION HYDRATION - THERMODYNAMIC AND STRUCTURAL-ANALYSIS WITH AN INTEGRAL-EQUATION THEORY OF LIQUIDS

Authors
Citation
Sh. Chong et F. Hirata, ION HYDRATION - THERMODYNAMIC AND STRUCTURAL-ANALYSIS WITH AN INTEGRAL-EQUATION THEORY OF LIQUIDS, JOURNAL OF PHYSICAL CHEMISTRY B, 101(16), 1997, pp. 3209-3220
Citations number
43
Categorie Soggetti
Chemistry Physical
Journal title
JOURNAL OF PHYSICAL CHEMISTRY B
ISSN journal
15206106 → ACNP
Volume
101
Issue
16
Year of publication
1997
Pages
3209 - 3220
Database
ISI
SICI code
1089-5647(1997)101:16<3209:IH-TAS>2.0.ZU;2-F
Abstract
We present a theoretical study for ion hydration based on an integral equation method referred to as the extended reference interaction site method (ex-RISM). We analyze the thermodynamic functions of solvation , especially the partial molar volumes of individual ions at infinite dilution. Special attention is paid to information contained in the pa rtial molar volumes and to the question of whether the partial molar v olumes of individual ions reflect the true nature of ion-water interac tions. Our results suggest, contrary to the previous work given by Kus alik and Patey (J. Chem. Phys. 1988, 89, 5843), that the partial molar volumes do reflect the nature of ion-water interactions. Concerning t he microscopic description of the ion hydration, we revisit the earlie r model proposed by Samoilov by defining the activation energy Delta E -i in his model in terms of the ion-water potential of mean force. The theoretical results are in good accord with the earlier model in term s of the classification of ions into the ''positive'' and ''negative'' hydrations. We also discuss the structural changes of water due to th e presence of an ion utilizing the density derivatives of the solvent distribution functions. Qualitative differences of the density derivat ives between the ''positively'' and ''negatively'' hydrated ions were observed and found to be consistent with the analysis of the potential of mean force.