Using first-principles density functional calculations, we investigate the structure and properties of previously unstudied grain boundaries (GBs) in the solar absorber material copper-zinc-tin-sulfide (CZTS). We identify four stable low-ς value symmetric tilt GBs with low formation energies: ς3 (111) and ς5 (201), each with two different GB terminations. Compared to CdTe and CuInSe, GBs in the quaternary semiconductor CZTS exhibit a wider variety of electronic states due to the more complex chemical environment near the GB, including under-coordinated atoms and dangling bonds. Further analysis confirms that strong dangling bonds introduce deep gap states in all GBs studied. We also investigate segregation and electronic properties of intri...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
The sub-bandgap levels associated with defect states in Cu2ZnSnS4 (CZTS) thin films are investigated...
The ternary semiconductors Cu(2)SnX(3) (X = S, Se) are found frequently as secondary phases in synth...
Chemical analysis of individual atom columns was carried out to determine the crystal structure and ...
Atomic resolution transmission electron microscopy has been used to examine antisite defects in Cu2Z...
Using first-principles density functional calculations, we investigate the structure and properties ...
Cu2ZnSnS4 (CZTS) is a technologically important and complex quaternary semiconductor and a highly pr...
The crystal structure identification of the photovoltaic material Cu2ZnSnSe4 (CZTSe) is challenging ...
Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junct...
Cu2ZnSnS4 (CZTS) is a promising material for the absorber layer in sustainable thin film photovoltai...
Cu2ZnSnS4 (CZTS) is a very promising material for the absorber layer in sustainable thin-film solar ...
Cu2ZnGeSe4 (CZGSe) is a promising earth-abundant and non-toxic semiconductor material for large-scal...
The structures and band gaps of copper-zinc-tin selenosulfides (CZTSSe) are investigated for a range...
The structures and band gaps of copper-zinc-tin selenosulfides (CZTSSe) are investigated for a range...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
The sub-bandgap levels associated with defect states in Cu2ZnSnS4 (CZTS) thin films are investigated...
The ternary semiconductors Cu(2)SnX(3) (X = S, Se) are found frequently as secondary phases in synth...
Chemical analysis of individual atom columns was carried out to determine the crystal structure and ...
Atomic resolution transmission electron microscopy has been used to examine antisite defects in Cu2Z...
Using first-principles density functional calculations, we investigate the structure and properties ...
Cu2ZnSnS4 (CZTS) is a technologically important and complex quaternary semiconductor and a highly pr...
The crystal structure identification of the photovoltaic material Cu2ZnSnSe4 (CZTSe) is challenging ...
Cu2SrSnS4 (CSTS) is a promising alternative candidate to Cu2ZnSnS4 (CZTS) for single- or multi-junct...
Cu2ZnSnS4 (CZTS) is a promising material for the absorber layer in sustainable thin film photovoltai...
Cu2ZnSnS4 (CZTS) is a very promising material for the absorber layer in sustainable thin-film solar ...
Cu2ZnGeSe4 (CZGSe) is a promising earth-abundant and non-toxic semiconductor material for large-scal...
The structures and band gaps of copper-zinc-tin selenosulfides (CZTSSe) are investigated for a range...
The structures and band gaps of copper-zinc-tin selenosulfides (CZTSSe) are investigated for a range...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
Various thin film I2 II IV VI4 photovoltaic absorbers derived from kesterite Cu2ZnSn S,Se 4 have bee...
The sub-bandgap levels associated with defect states in Cu2ZnSnS4 (CZTS) thin films are investigated...