Journal of Chemical Physics, Vol.100, No.7, 5201-5210, 1994
Highly Concentrated Salt-Solutions - Molecular-Dynamics Simulations of Structure and Transport
Molecular dynamics (MD) simulations in NaI solutions, where the solvent has been represented by the Stockmayer fluid, were performed as a function of temperature, salt concentration, and solvent dipole strength. At higher temperatures contact ion pairs become more prevalent, regardless of solvent strength. An examination of the temperature dependence of the potential of mean force demonstrates the entropic nature of this effect. The transport properties calculated in the simulations are dependent on the balance between solvent dielectric constant and ion charge. In systems with a large solvent dipole moment, the ions appear to be independently mobile, and deviations from Nernst-Einstein behavior are small. In systems of smaller solvent dipole moment or greater ion charge, the ions form clusters, and large deviations from Nernst-Einstein behavior are observed.
Keywords:POLARIZABLE IONIC-SOLUTIONS;ALKALI-METAL SALTS;COMPUTER-SIMULATION;ELECTROLYTE-SOLUTIONS;POLYMER ELECTROLYTES;ELECTRICAL-PROPERTIES;TEMPERATURE-DEPENDENCE;AQUEOUS-SOLUTION;MEAN FORCE;PAIR