We present a theoretical study of hydrogenated amorphous silicon nitride (a-SiNx:H), with equal concentrations of Si and N atoms (x=1), for two considerably different densities (2.0 and 3.0 g/cm3). Densities and hydrogen concentration were chosen according to experimental data. Using first-principles molecular-dynamics within density-functional theory the models were generated by cooling from the liquid. Where both models have a short-range order resembling that of crystalline Si3N4 because of their different densities and hydrogen concentrations they show marked differences at longer length scales. The low-density nitride forms a percolating network of voids with the internal surfaces passivated by hydrogen. Although some voids are still p...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)We present a study of amorphous hydroge...
We have extended our experimentally constrained molecular relaxation technique [P. Biswas et al., Ph...
We present a theoretical study of hydrogenated amorphous silicon nitride (a-SiNx:H), with equal conc...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
Hydrogenated amorphous dielectric thin films are critical materials in a wide array of technologies....
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)We present a study of amorphous hydroge...
We have extended our experimentally constrained molecular relaxation technique [P. Biswas et al., Ph...
We present a theoretical study of hydrogenated amorphous silicon nitride (a-SiNx:H), with equal conc...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
Hydrogenated amorphous dielectric thin films are critical materials in a wide array of technologies....
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)We present a study of amorphous hydroge...
We have extended our experimentally constrained molecular relaxation technique [P. Biswas et al., Ph...