To predict the structures, properties, and chemistry of materials involving silicon and silicon oxides; interfaces between these materials; and hydrolysis of such systems, we have developed the ReaxFFSiO, reactive force field. The parameters for this force field were obtained from fitting to the results of quantum chemical (QC) calculations on the structures and energy barriers for a number of silicon oxide clusters and on the equations of state for condensed phases of Si and SiO2 from QC. We expect that ReaxFFSiO will allow accurate dynamical simulations of bond breaking processes in large silicon and silicon oxide systems. ReaxFFSiO is based closely on the potential functions of the ReaxFFCH reactive force field for hydrocarbons, so that ...
International audiencevide insights into reaction mechanisms, energy barriers 66 and adsorption ener...
Classical molecular dynamics (CMD) simulations were carried out to optimizesilicon oxide interfaces ...
The interface chemistry of silicon nanocrystals (NCs) embedded in an amorphous oxide matrix is studi...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
This study presents an atomic level of molecular dynamic simulation of oxidation of silicon nanopart...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
In this work, we developed Si/C/H ReaxFF force field for the study of the functionalization and deco...
In this work, we developed Si/C/H ReaxFF force field for the study of the functionalization and deco...
International audiencevide insights into reaction mechanisms, energy barriers 66 and adsorption ener...
International audiencevide insights into reaction mechanisms, energy barriers 66 and adsorption ener...
Classical molecular dynamics (CMD) simulations were carried out to optimizesilicon oxide interfaces ...
The interface chemistry of silicon nanocrystals (NCs) embedded in an amorphous oxide matrix is studi...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
To predict the structures, properties, and chemistry of materials involving silicon and silicon oxid...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
We redeveloped the ReaxFF force field parameters for Si/O/H interactions that enable molecular dynam...
This study presents an atomic level of molecular dynamic simulation of oxidation of silicon nanopart...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
In this work, we developed Si/C/H ReaxFF force field for the study of the functionalization and deco...
In this work, we developed Si/C/H ReaxFF force field for the study of the functionalization and deco...
International audiencevide insights into reaction mechanisms, energy barriers 66 and adsorption ener...
International audiencevide insights into reaction mechanisms, energy barriers 66 and adsorption ener...
Classical molecular dynamics (CMD) simulations were carried out to optimizesilicon oxide interfaces ...
The interface chemistry of silicon nanocrystals (NCs) embedded in an amorphous oxide matrix is studi...