A microscopic theory is described for the ion solvation dynamics in binary dipolar liquids. The theory is self-contained and properly includes inertial and non-Markovian effects which are extremely important in the fast initial phase of the relaxation. The theory also includes diffusional effects important at long times. Molecular dynamics simulation results are also presented for the solvation dynamics in two model dipolar mixtures. The theoretical predictions are found to be in good agreement with the simulation results
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
The solvation time correlation function for solvation in liquid water was measured recently. The sol...
Molecular dynamics computer simulations were performed to study the dynamics of the ionic solvation ...
A microscopic theory of the statics and the dynamics of solvation of an ion in a binary dipolar liqu...
Both the equilibrium and the dynamical aspects of solvation of a classical ion in a dense binary dip...
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...
Several recent theoretical and computer simulation studies have considered solvation dynamics in a B...
The dynamics of selective ion solvation in binary solvents is investigated using molecular dynamics...
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...
The equilibrium and nonequilibrium solvation dynamics in a nonspherical and nonpolarizable dipolar l...
In this article we present a new, general but simple, microscopic expression for time-dependent solv...
It is shown from an analytical theory that the solvation dynamics of a small ion can be controlled l...
It is shown from an analytical theory that the solvation dynamics of a small ion can be controlled l...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
The solvation time correlation function for solvation in liquid water was measured recently. The sol...
Molecular dynamics computer simulations were performed to study the dynamics of the ionic solvation ...
A microscopic theory of the statics and the dynamics of solvation of an ion in a binary dipolar liqu...
Both the equilibrium and the dynamical aspects of solvation of a classical ion in a dense binary dip...
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...
Several recent theoretical and computer simulation studies have considered solvation dynamics in a B...
The dynamics of selective ion solvation in binary solvents is investigated using molecular dynamics...
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...
The equilibrium and nonequilibrium solvation dynamics in a nonspherical and nonpolarizable dipolar l...
In this article we present a new, general but simple, microscopic expression for time-dependent solv...
It is shown from an analytical theory that the solvation dynamics of a small ion can be controlled l...
It is shown from an analytical theory that the solvation dynamics of a small ion can be controlled l...
A microscopic theory of equilibrium solvation and solvation dynamics of a classical, polar, solute m...
The solvation time correlation function for solvation in liquid water was measured recently. The sol...
Molecular dynamics computer simulations were performed to study the dynamics of the ionic solvation ...