Organic glass films formed by physical vapor deposition exhibit enhanced stability relative to those formed by conventional liquid cooling and aging techniques. Recently, experimental and computational evidence has emerged indicating that the average molecular orientation can be tuned by controlling the substrate temperature at which these “stable glasses” are grown. In this work, we present a comprehensive all-atom simulation study of ethylbenzene, a canonical stable-glass former, using a computational film formation procedure that closely mimics the vapor deposition process. Atomistic studies of experimentally formed vapor-deposited glasses have not been performed before, and this study therefore begins by verifying that the model and met...
Glass films prepared by a process of physical vapour deposition have been shown to have thermodynami...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...
The homogeneous structure, and inherent tunability, of molecular glasses makes them particularly int...
International audience: Enhanced kinetic stability of vapor-deposited glasses has been established f...
Dataset for the data in "Influence of Molecular Shape on the Thermal Stability and Molecular Orienta...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
Nanometer-scaled thin films of molecular glasses have been widely applied in photovoltaics, organic ...
Vapor deposited organic glasses are currently in use in many optoelectronic devices. Their operation...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
The orientational order and morphology of organic thin films play an important role in defining thei...
Stable Glasses (SGs) are very dense glasses with remarkable thermodynamic and kinetic stability, tha...
NSERCPeer ReviewedThe origin of the exceptional stability of molecular glasses grown by physical vap...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
Glasses prepared by physical vapor deposition (PVD) are anisotropic, and the average molecular orien...
Glass films prepared by a process of physical vapour deposition have been shown to have thermodynami...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...
The homogeneous structure, and inherent tunability, of molecular glasses makes them particularly int...
International audience: Enhanced kinetic stability of vapor-deposited glasses has been established f...
Dataset for the data in "Influence of Molecular Shape on the Thermal Stability and Molecular Orienta...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
Nanometer-scaled thin films of molecular glasses have been widely applied in photovoltaics, organic ...
Vapor deposited organic glasses are currently in use in many optoelectronic devices. Their operation...
The existence of nanometer-sized amorphous material (glasses) is ubiquitous and plays a crucial role...
The orientational order and morphology of organic thin films play an important role in defining thei...
Stable Glasses (SGs) are very dense glasses with remarkable thermodynamic and kinetic stability, tha...
NSERCPeer ReviewedThe origin of the exceptional stability of molecular glasses grown by physical vap...
Glasses of small organic molecules are a ubiquitous material type of wide interest due to their uniq...
Glasses prepared by physical vapor deposition (PVD) are anisotropic, and the average molecular orien...
Glass films prepared by a process of physical vapour deposition have been shown to have thermodynami...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...
Anisotropic molecular packing is a key feature that makes glasses prepared by physical vapor deposit...