A force field model of the Keating type supplemented by rules to break, form, and interchange bonds is applied to investigate thermodynamic and structural properties of the amorphous SiO2 surface. A simulated quench from the liquid phase has been carried out for a silica sample made of 3888 silicon and 7776 oxygen atoms arranged on a slab similar to 40 angstrom thick, periodically repeated along two directions. The quench results into an amorphous sample, exposing two parallel square surfaces of similar to 42 nm(2) area each. Thermal averages computed during the quench allow us to determine the surface thermodynamic properties as a function of temperature. The surface tension turns out to be gamma=310 +/- 20 erg/cm(2) at room temperature an...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...
Accurate atomically detailed models of amorphous materials have been elusive to-date due to limitati...
In this work we use molecular dynamics (MD) simulations with the ReaxFF<sub>SiO</sub><sup>GSI</sup> ...
We performed reactive force field molecular dynamics simulation to observe the hydrolysis reactions ...
Silica nanostructures find applications in drug delivery, catalysis, and composites, however, unders...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
Silica nanostructures find applications in drug delivery, catalysis, and composites, however, unders...
The adherence of model molecules to crystal SiO2 surfaces is studied from first principle calculati...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
From bulk-liquid configurations, amorphous SiO2 surfaces are generated using simulations employing a...
The recent experimental discovery of a semi two-dimensional silica glass has offered a realistic des...
A review article is presented of the research results obtained by the author on the properties of am...
From bulk-liquid configurations, amorphous SiO2 surfaces are generated using simulations employing a...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...
Accurate atomically detailed models of amorphous materials have been elusive to-date due to limitati...
In this work we use molecular dynamics (MD) simulations with the ReaxFF<sub>SiO</sub><sup>GSI</sup> ...
We performed reactive force field molecular dynamics simulation to observe the hydrolysis reactions ...
Silica nanostructures find applications in drug delivery, catalysis, and composites, however, unders...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
Silica nanostructures find applications in drug delivery, catalysis, and composites, however, unders...
The adherence of model molecules to crystal SiO2 surfaces is studied from first principle calculati...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
From bulk-liquid configurations, amorphous SiO2 surfaces are generated using simulations employing a...
The recent experimental discovery of a semi two-dimensional silica glass has offered a realistic des...
A review article is presented of the research results obtained by the author on the properties of am...
From bulk-liquid configurations, amorphous SiO2 surfaces are generated using simulations employing a...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...
Silica (SiO₂) is an abundant material with a wide range of applications. Despite much progress, the ...