Title of article
Monte Carlo simulations of copper chloride solutions at various concentrations including full 3-body correction terms Original Research Article
Author/Authors
Norbert R. Texler، نويسنده , , Bernd M. Rode، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 1997
Pages
8
From page
281
To page
288
Abstract
Aqueous copper chloride solutions at concentrations of 1, 3 and 5 mol kg−1 have been investigated by means of Metropolis Monte Carlo simulations. The structural results are compared with experimental data on species formation and structure of these solutions. As pair potentials are insufficient to describe solvation phenomena correctly, three-body terms were incorporated, based on ab initio calculations for the interactions Cu2+H2OH2O and Cu2+Cl−H2O. The simulations were performed with three-body correction for the Cu2+H2OH2O alone and with three-body corrections for both Cu2+H2OH2O and Cu2+Cl−H2O. The structure of the solvated copper(II) ion is discussed in terms of radial density functions and coordination number distributions. The correction of the Cu2+Cl−H2O interactions proved absolutely necessary to achieve reliable structural results, whereas three-body effects corresponding to Cl−Cu2+Cl− interactions could be neglected, since in most species two chloride ions are located in trans-positions.
Journal title
Chemical Physics
Serial Year
1997
Journal title
Chemical Physics
Record number
1058170
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