Glasses obtained from vapor deposition on a cold substrate have superior thermodynamic and kinetic stability with respect to ordinary glasses. Here we perform molecular dynamics simulations of vapor deposition of a model glassformer and investigate the origin of its high stability compared to that of ordinary glasses. We find that the vapor deposited glass is characterized by locally favored structures (LFSs) whose occurrence correlates with its stability, reaching a maximum at the optimal deposition temperature. The formation of LFSs is enhanced near the free surface, hence supporting the idea that the stability of vapor deposited glasses is connected to the relaxation dynamics at the surface
International audienceBy decreasing the rate of physical vapor deposition, ZrCuAl metallic glasses w...
Stable Glasses (SGs) are very dense glasses with remarkable thermodynamic and kinetic stability, tha...
The origin of the astonishing properties of recently discovered ultrastable nanoglasses is presently...
Nanometer-scaled thin films of molecular glasses have been widely applied in photovoltaics, organic ...
Glasses formed by physical vapor deposition (PVD) are an interesting new class of materials, exhibit...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
Glasses prepared by physical vapour deposition have been shown to be remarkably more stable than tho...
Ultrastable glasses (mostly prepared from the vapor phase under optimized deposition conditions) rep...
Altres ajuts: the ICN2 was funded by the CERCA programme / Generalitat de Catalunya.Ultrastable glas...
We use a swap Monte Carlo algorithm to numerically prepare bulk glasses with kinetic stability compa...
Glass films prepared by a process of physical vapour deposition have been shown to have thermodynami...
By decreasing the rate of physical vapor deposition, ZrCuAl metallic glasses with improved stability...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
International audienceBy decreasing the rate of physical vapor deposition, ZrCuAl metallic glasses w...
Stable Glasses (SGs) are very dense glasses with remarkable thermodynamic and kinetic stability, tha...
The origin of the astonishing properties of recently discovered ultrastable nanoglasses is presently...
Nanometer-scaled thin films of molecular glasses have been widely applied in photovoltaics, organic ...
Glasses formed by physical vapor deposition (PVD) are an interesting new class of materials, exhibit...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
Glasses prepared by physical vapour deposition have been shown to be remarkably more stable than tho...
Ultrastable glasses (mostly prepared from the vapor phase under optimized deposition conditions) rep...
Altres ajuts: the ICN2 was funded by the CERCA programme / Generalitat de Catalunya.Ultrastable glas...
We use a swap Monte Carlo algorithm to numerically prepare bulk glasses with kinetic stability compa...
Glass films prepared by a process of physical vapour deposition have been shown to have thermodynami...
By decreasing the rate of physical vapor deposition, ZrCuAl metallic glasses with improved stability...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
International audienceBy decreasing the rate of physical vapor deposition, ZrCuAl metallic glasses w...
Stable Glasses (SGs) are very dense glasses with remarkable thermodynamic and kinetic stability, tha...
The origin of the astonishing properties of recently discovered ultrastable nanoglasses is presently...