In order to investigate various properties of hydrogenated amorphous silicon (a-Si:H) for improvement of low conversion efficiency and stability of solar cells, a series of quantum simulations based on the density functional theory combined with the tight binding model were performed for a-Si:H with various hydrogen concentrations and cooling rates. The radial distribution function (RDF) for Si-Si pairs indicates that samples with higher H concentration (20% and 25%) give a structure in better agreement with experiments, but the RDF of Si-H pairs suggests that samples with lower H concentration (14%) may give more appropriate structure. The coordination number (Nc) analysis indicates that more defects (dangling bonds and floating bonds) exi...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
Amorphous silicon has become the material of choice for many technologies, with major applications i...
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...
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...
To investigate the electron transport properties of hydrogenated amorphous silicon (a-Si:H), a serie...
In this paper, we use a model of hydrogenated amorphous silicon generated from molecular dynamics wi...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
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 have extended our experimentally constrained molecular relaxation technique [P. Biswas et al., Ph...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
Amorphous silicon has become the material of choice for many technologies, with major applications i...
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...
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...
To investigate the electron transport properties of hydrogenated amorphous silicon (a-Si:H), a serie...
In this paper, we use a model of hydrogenated amorphous silicon generated from molecular dynamics wi...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
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 have extended our experimentally constrained molecular relaxation technique [P. Biswas et al., Ph...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
This article presents an ab initio study of hydrogen dynamics inside nanometer-size voids in amorpho...
Amorphous silicon has become the material of choice for many technologies, with major applications i...