Progress has recently been made in developing reactive force fields to describe chemical reactions in systems too large for quantum mechanical (QM) methods. In particular, ReaxFF, a force field with parameters that are obtained solely from fitting QM reaction data, has been used to predict structures and properties of many materials. Important applications require, however, determination of the final structures produced by such complex processes as chemical vapor deposition, atomic layer deposition, and formation of ceramic films by pyrolysis of polymers. This requires the force field to properly describe the formation of other products of the process, in addition to yielding the final structure of the material. We describe a strategy for a...
Pyrolysis of phenolic resins leads to carbon formation. Simulating this resin-to-carbon process atom...
Large-scale molecular-dynamics (MD) simulations have been performed to gain insight into: (1) sinter...
The depositions of amorphous and cubic-crystal SiC from a new chemical vapor deposition source, diet...
A broad class of important materials, such as carbon molecular sieves, silicon carbide (SiC), and si...
In part 1 of this series we developed the reactive force field ReaxFF, choosing the parameters adjus...
In part 1 of this series we developed the reactive force field ReaxFF, choosing the parameters adjus...
Localized basis ab initio molecular dynamics simulation within the density functional framework has ...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
The atomistic model of amorphous silicon-carbide membrane that was developed in Parts I and II of th...
Simulations of the initial oxidation process of a SiC surface exposed to O<sub>2</sub> and H<sub>2</...
Silicon carbide (SiC) is a promising material for electronics due to its hardness, and ability to ca...
Amorphous silicon carbide (a-SiC) films were deposited using molecular dynamics simulations employin...
Large-scale parallel molecular-dynamics (MD) simulations are performed to investigate properties and...
Pyrolysis of phenolic resins leads to carbon formation. Simulating this resin-to-carbon process atom...
Large-scale molecular-dynamics (MD) simulations have been performed to gain insight into: (1) sinter...
The depositions of amorphous and cubic-crystal SiC from a new chemical vapor deposition source, diet...
A broad class of important materials, such as carbon molecular sieves, silicon carbide (SiC), and si...
In part 1 of this series we developed the reactive force field ReaxFF, choosing the parameters adjus...
In part 1 of this series we developed the reactive force field ReaxFF, choosing the parameters adjus...
Localized basis ab initio molecular dynamics simulation within the density functional framework has ...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
Amorphous silicon oxycarbide (SiOC) ceramics have extensive applications as structural and functiona...
The atomistic model of amorphous silicon-carbide membrane that was developed in Parts I and II of th...
Simulations of the initial oxidation process of a SiC surface exposed to O<sub>2</sub> and H<sub>2</...
Silicon carbide (SiC) is a promising material for electronics due to its hardness, and ability to ca...
Amorphous silicon carbide (a-SiC) films were deposited using molecular dynamics simulations employin...
Large-scale parallel molecular-dynamics (MD) simulations are performed to investigate properties and...
Pyrolysis of phenolic resins leads to carbon formation. Simulating this resin-to-carbon process atom...
Large-scale molecular-dynamics (MD) simulations have been performed to gain insight into: (1) sinter...
The depositions of amorphous and cubic-crystal SiC from a new chemical vapor deposition source, diet...