A microscopic theory of the statics and the dynamics of solvation of an ion in a binary dipolar liquid is presented. The theory properly includes the different intermolecular correlations that are present in a binary mixture. As a result, the theory can explain several important aspects of both the statics and the dynamics of solvation that are observed in experiments. It provides a microscopic explanation of the preferential solvation of the more polar species by the solute ion. The dynamics of solvation is predicted to be highly non-exponential, in general. The average relaxation time is found to change nonlinearly with the composition of the mixture. These predictions are in qualitative agreement with the experimental results
The equilibrium and nonequilibrium solvation dynamics in a nonspherical and nonpolarizable dipolar l...
A simple but self-consistent microscopic theory for the time dependent solvation energy of both ions...
In this article we present a new, general but simple, microscopic expression for time-dependent solv...
Both the equilibrium and the dynamical aspects of solvation of a classical ion in a dense binary dip...
A microscopic theory is described for the ion solvation dynamics in binary dipolar liquids. The theo...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A recently developed microscopic theory of solvation dynamics in real dipolar liquids is used to cal...
A molecular theory of the dynamics of solvation of an ion in a dense dipolar liquid is presented. Th...
A recently developed microscopic theory of solvation dynamics in real dipolar liquids is used to cal...
In this article theoretical studies of equilibrium and dynamic solvation of a dipole in a dense dipo...
Several recent theoretical and computer simulation studies have considered solvation dynamics in a B...
Microscopic expressions for the time dependence of solvation energies of newly created ions and dipo...
In the theoretical treatments of the dynamics of solvation of a newly created ion in a dipolar solve...
A microscopic study of the solvation dynamics of a rigid ion in liquid methanol is presented. The th...
Theoretical expressions for the time-dependent solvation energy of an ion and of a dipole in a dense...
The equilibrium and nonequilibrium solvation dynamics in a nonspherical and nonpolarizable dipolar l...
A simple but self-consistent microscopic theory for the time dependent solvation energy of both ions...
In this article we present a new, general but simple, microscopic expression for time-dependent solv...
Both the equilibrium and the dynamical aspects of solvation of a classical ion in a dense binary dip...
A microscopic theory is described for the ion solvation dynamics in binary dipolar liquids. The theo...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
A recently developed microscopic theory of solvation dynamics in real dipolar liquids is used to cal...
A molecular theory of the dynamics of solvation of an ion in a dense dipolar liquid is presented. Th...
A recently developed microscopic theory of solvation dynamics in real dipolar liquids is used to cal...
In this article theoretical studies of equilibrium and dynamic solvation of a dipole in a dense dipo...
Several recent theoretical and computer simulation studies have considered solvation dynamics in a B...
Microscopic expressions for the time dependence of solvation energies of newly created ions and dipo...
In the theoretical treatments of the dynamics of solvation of a newly created ion in a dipolar solve...
A microscopic study of the solvation dynamics of a rigid ion in liquid methanol is presented. The th...
Theoretical expressions for the time-dependent solvation energy of an ion and of a dipole in a dense...
The equilibrium and nonequilibrium solvation dynamics in a nonspherical and nonpolarizable dipolar l...
A simple but self-consistent microscopic theory for the time dependent solvation energy of both ions...
In this article we present a new, general but simple, microscopic expression for time-dependent solv...