We calculate the components of the microscopic pressure tensor as a function of radial distance r from the centre of a spherical water droplet, modelled using the TIP4P/2005 potential. To do so, we modify a coarsegraining method for calculating the microscopic pressure (Ikeshoji et al 2003 Mol. Simul. 29 101) in order to apply it to a rigid molecular model of water. As test cases, we study nanodroplets ranging in size from 776 to 2880 molecules at 220 K. Beneath a surface region comprising approximately two molecular layers, the pressure tensor becomes approximately isotropic and constant with r. We nd that the dependence of the pressure on droplet radius is that expected from the Young–Laplace equation, despite the small size of the drop...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
Molecular dynamics simulations of a nanoscale liquid droplet on a solid surface are carried out in o...
Using molecular dynamics (MD) simulations, a new approach based on the behavior of pressurized water...
Classical thermodynamics is assumed to be valid up to a certain length-scale, below which the discon...
Debates continue on the applicability of the Young-Laplace equation for droplets, vapor bubbles and ...
We carry out extensive molecular dynamics simulations of nanoscale liquid droplets of the TIP4P/2005...
Classical thermodynamics is assumed to be valid up to a certain length-scale, below which the discon...
The surface tension of nanoscale droplets of water was studied with molecular dynamics simulations u...
The Young–Laplace equation is central to the thermodynamic description of liquids with highly curved...
Liquid water nanodroplets are important in earth’s climate, and are valuable for studying supercoole...
In this article we introduce a simple grand canonical screening (GCS) approach to accurately compute...
We compare all-atom simulations of nanoscale water droplets of spherical and cylindrical morphologie...
[[abstract]]This present work investigates the interactions between a nano-water droplet and an isot...
In this review, a formula that determines the curvature-dependent surface tension in a droplet with ...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
Molecular dynamics simulations of a nanoscale liquid droplet on a solid surface are carried out in o...
Using molecular dynamics (MD) simulations, a new approach based on the behavior of pressurized water...
Classical thermodynamics is assumed to be valid up to a certain length-scale, below which the discon...
Debates continue on the applicability of the Young-Laplace equation for droplets, vapor bubbles and ...
We carry out extensive molecular dynamics simulations of nanoscale liquid droplets of the TIP4P/2005...
Classical thermodynamics is assumed to be valid up to a certain length-scale, below which the discon...
The surface tension of nanoscale droplets of water was studied with molecular dynamics simulations u...
The Young–Laplace equation is central to the thermodynamic description of liquids with highly curved...
Liquid water nanodroplets are important in earth’s climate, and are valuable for studying supercoole...
In this article we introduce a simple grand canonical screening (GCS) approach to accurately compute...
We compare all-atom simulations of nanoscale water droplets of spherical and cylindrical morphologie...
[[abstract]]This present work investigates the interactions between a nano-water droplet and an isot...
In this review, a formula that determines the curvature-dependent surface tension in a droplet with ...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
In this work we study the formation of nanodrops on curved surfaces (both convex and concave) by mea...
Molecular dynamics simulations of a nanoscale liquid droplet on a solid surface are carried out in o...