We studied the layer-by-layer collapse of molecularly thin films of a model lubricant confined between two atomically smooth substrates. The dynamics of the consecutive expulsion of four molecular layers were found to slow down with decreasing film thickness but showed no evidence for confinement-induced solidification. Using a hydrodynamic model, we show that the sliding friction of liquid layers on top of the solid substrates is approximately 18 times higher than the mutual friction between adjacent liquid layers. The latter was independent of film thickness and in close agreement with the bulk viscosity
13 pagesInternational audienceThe van der Waals forces across a very thin liquid layer (nanofilm) in...
We use large-scale molecular dynamics simulations to model the dewetting of solid surfaces by partia...
In capillary-driven fluid dynamics, simple departures from equilibrium offer the chance to quantitat...
Confined liquid films with a thickness in the range of a few molecular diameters exhibit different m...
Confined liquid films with a thickness in the range of a few molecular diameters exhibit different m...
We investigated the dynamics of layering transitions and other structure formation processes in mole...
The elastohydrodynamic lubrication (EHL) regime is characterized by the elastic deformation of the b...
The elastohydrodynamic lubrication (EHL) regime is characterized by the elastic deformation of the b...
International audienceWe experimentally investigate the sedimentation of a non-wetting drop confined...
We use molecular dynamics simulations to study thermal sliding of two nanostructured surfaces separa...
We use molecular dynamics simulations to study thermal sliding of two nanostructured surfaces separa...
Non-Equilibrium Molecular Dynamics (NEMD) computer simulations were employed to study films in nanom...
Whether a lubricant or a coating wets a surface or not is of great technical importance. Theoretical...
Whether a lubricant or a coating wets a surface or not is of great technical importance. Theoretical...
Abstract Liquids confined to molecular scales become anisotropic and often show pronounced self-orga...
13 pagesInternational audienceThe van der Waals forces across a very thin liquid layer (nanofilm) in...
We use large-scale molecular dynamics simulations to model the dewetting of solid surfaces by partia...
In capillary-driven fluid dynamics, simple departures from equilibrium offer the chance to quantitat...
Confined liquid films with a thickness in the range of a few molecular diameters exhibit different m...
Confined liquid films with a thickness in the range of a few molecular diameters exhibit different m...
We investigated the dynamics of layering transitions and other structure formation processes in mole...
The elastohydrodynamic lubrication (EHL) regime is characterized by the elastic deformation of the b...
The elastohydrodynamic lubrication (EHL) regime is characterized by the elastic deformation of the b...
International audienceWe experimentally investigate the sedimentation of a non-wetting drop confined...
We use molecular dynamics simulations to study thermal sliding of two nanostructured surfaces separa...
We use molecular dynamics simulations to study thermal sliding of two nanostructured surfaces separa...
Non-Equilibrium Molecular Dynamics (NEMD) computer simulations were employed to study films in nanom...
Whether a lubricant or a coating wets a surface or not is of great technical importance. Theoretical...
Whether a lubricant or a coating wets a surface or not is of great technical importance. Theoretical...
Abstract Liquids confined to molecular scales become anisotropic and often show pronounced self-orga...
13 pagesInternational audienceThe van der Waals forces across a very thin liquid layer (nanofilm) in...
We use large-scale molecular dynamics simulations to model the dewetting of solid surfaces by partia...
In capillary-driven fluid dynamics, simple departures from equilibrium offer the chance to quantitat...