Investigations into the variation of self-diffusivity with solute radius, density, and degree of disorder of the host medium is explored. The system consists of a binary mixture of a relatively smaller sized solute, whose size is varied and a larger sized solvent interacting via Lennard-Jones potential. Calculations have been performed at three different reduced densities of 0.7, 0.8, and 0.933. These simulations show that diffusivity exhibits a maximum for some intermediate size of the solute when the solute diameter is varied. The maximum is found at the same size of the solute at all densities which is at variance with the prediction of the levitation effect. In order to understand this anomaly, additional simulations were carried out in...
The progress of the liquid-liquid phase separation phenomenon has been investigated by very large sc...
A molecular dynamics study of model ions in water is reported. The van der Waals diameter of both th...
We propose an alternative explanation of the size-dependent maximum in ion mobility in water in term...
Investigations into the variation of self-diffusivity with solute radius, density, and degree of dis...
Size dependence of solute diffusivity has been investigated using molecular dynamics simulations for...
Self-diffusivity, D, of diffusants in widely differing mediums such as liquids (e.g., solution), por...
We study the diffusion of small guest particles of different sizes in a host fluid at liquid densiti...
Recent studies suggest that there exists a size-dependent diffusivity maximum in binary mixtures int...
Recent studies suggest that there exists a size-dependent diffusivity maximum in binary mixtures int...
We report a molecular dynamics study of a binary mixture consisting of a large (host) particle and a...
We report results of molecular dynamics investigations into neutral impurity diffusing within an amo...
Einstein and others derived the reciprocal dependence of the self-diffusivity D on the solute radius...
We propose an alternative explanation of the size-dependent maximum in ion mobility in water in term...
Einstein and others derived the reciprocal dependence of the self-diffusivity D on the solute radius...
The growth of the characteristic length scales both for diffusion and viscosity is investigated by m...
The progress of the liquid-liquid phase separation phenomenon has been investigated by very large sc...
A molecular dynamics study of model ions in water is reported. The van der Waals diameter of both th...
We propose an alternative explanation of the size-dependent maximum in ion mobility in water in term...
Investigations into the variation of self-diffusivity with solute radius, density, and degree of dis...
Size dependence of solute diffusivity has been investigated using molecular dynamics simulations for...
Self-diffusivity, D, of diffusants in widely differing mediums such as liquids (e.g., solution), por...
We study the diffusion of small guest particles of different sizes in a host fluid at liquid densiti...
Recent studies suggest that there exists a size-dependent diffusivity maximum in binary mixtures int...
Recent studies suggest that there exists a size-dependent diffusivity maximum in binary mixtures int...
We report a molecular dynamics study of a binary mixture consisting of a large (host) particle and a...
We report results of molecular dynamics investigations into neutral impurity diffusing within an amo...
Einstein and others derived the reciprocal dependence of the self-diffusivity D on the solute radius...
We propose an alternative explanation of the size-dependent maximum in ion mobility in water in term...
Einstein and others derived the reciprocal dependence of the self-diffusivity D on the solute radius...
The growth of the characteristic length scales both for diffusion and viscosity is investigated by m...
The progress of the liquid-liquid phase separation phenomenon has been investigated by very large sc...
A molecular dynamics study of model ions in water is reported. The van der Waals diameter of both th...
We propose an alternative explanation of the size-dependent maximum in ion mobility in water in term...