Shear and bulk viscosities of liquid water and argon are evaluated from first-principles in the density functional theory (DFT) framework, by performing molecular dynamics simulations in the NVE ensemble and using the Kubo-Greenwood equilibrium approach. The standard DFT functional is corrected in such a way to allow for a reasonable description of van der Waals effects. For liquid argon, the thermal conductivity has been also calculated. Concerning liquid water, to our knowledge, this is the first estimate of the bulk viscosity and of the shear-viscosity/bulk-viscosity ratio from first-principles. By analyzing our results, we can conclude that our first-principles simulations, performed at a nominal average temperature of 366 to guarantee ...
Molecular dynamics simulation was employed to deduce the dynamics property distribution function of ...
Three basic diffusion properties of argon ? shear viscosity, bulk viscosity and thermal conductivity...
The temperature-dependent thermal conductivity and shear viscosity of liquid water between 283 and 3...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
We report on an extensive study of the viscosity of liquid water at near-ambient conditions, perform...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
The transport theory of liquids presented by Prigogine, Nicolis, and Misguich (PNM) is compared to e...
The knowledge of transport properties is crucial to design new devices in electronic and biotechnolo...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
A molecular theory of the coefficients of shear and bulk viscosity of monatomic liquids is developed...
Molecular dynamics simulation was employed to deduce the dynamics property distribution function of ...
Three basic diffusion properties of argon ? shear viscosity, bulk viscosity and thermal conductivity...
The temperature-dependent thermal conductivity and shear viscosity of liquid water between 283 and 3...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
The use of first-principles molecular dynamics to calculate the viscosity of liquid metals using the...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
We report on an extensive study of the viscosity of liquid water at near-ambient conditions, perform...
We demonstrate the practical feasibility of calculating transport coefficients such as the viscosity...
The transport theory of liquids presented by Prigogine, Nicolis, and Misguich (PNM) is compared to e...
The knowledge of transport properties is crucial to design new devices in electronic and biotechnolo...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
A molecular theory of the coefficients of shear and bulk viscosity of monatomic liquids is developed...
Molecular dynamics simulation was employed to deduce the dynamics property distribution function of ...
Three basic diffusion properties of argon ? shear viscosity, bulk viscosity and thermal conductivity...
The temperature-dependent thermal conductivity and shear viscosity of liquid water between 283 and 3...