Copper-chalcogenides are promising candidates for thin film photovoltaics due to their ideal electronic structure and potential for defect tolerance. To this end, we have theoretically investigated the optoelectronic properties of Cu2SiSe3, due to its simple ternary composition, and the favorable difference in charge and size between the cation species, limiting antisite defects and cation disorder. We find it to have an ideal, direct bandgap of 1.52 eV and a maximum efficiency of 30% for a 1.5 μm-thick film at the radiative limit. Using hybrid density functional theory, the formation energies of all intrinsic defects are calculated, revealing the p-type copper vacancy as the dominant defect species, which forms a perturbed host state. Over...
Recently, CuSbS<sub>2</sub> has been proposed as an alternative earth-abundant absorber material for...
Global warming poses an existential threat to humanity and is inevitable unless significant efforts ...
Due to its attractive optical, electrical, and chemical properties, the ternary CuInSe2 (CIS) chalco...
To accelerate environmentally friendly thin film photovoltaic (PV) technologies, copper-based chalco...
This chapter describes the state of the art in computer simulations in the context of the developmen...
peer reviewedAs the demand for photovoltaics rapidly increases, there is a pressing need for the ide...
As the demand for photovoltaics rapidly increases, there is a pressing need for the identification o...
Cu-based chalcopyrite compounds have attracted much attention for photovoltaic application, while so...
AbstractTernary Cu(Sb,Bi)(S,Se)2 compounds such as CuSbS2, CuSbSe2, CuBiS2, and CuBiSe2, are potenti...
Cu{sub x}S is one of the most promising solar cell absorber materials that has the potential to repl...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
Among the thin-film solar cells, the maximum efficiencies are achieved by devices that use Cu(In,Ga)...
A fully self-contained study of the thermodynamic and electronic properties of intrinsic point defec...
Discovery of new semiconductor candidates with suitable band gaps is a challenge for optoelectronic ...
International audienceHerein we report a thorough investigation on Sb 2 Se 3, a promising absorber m...
Recently, CuSbS<sub>2</sub> has been proposed as an alternative earth-abundant absorber material for...
Global warming poses an existential threat to humanity and is inevitable unless significant efforts ...
Due to its attractive optical, electrical, and chemical properties, the ternary CuInSe2 (CIS) chalco...
To accelerate environmentally friendly thin film photovoltaic (PV) technologies, copper-based chalco...
This chapter describes the state of the art in computer simulations in the context of the developmen...
peer reviewedAs the demand for photovoltaics rapidly increases, there is a pressing need for the ide...
As the demand for photovoltaics rapidly increases, there is a pressing need for the identification o...
Cu-based chalcopyrite compounds have attracted much attention for photovoltaic application, while so...
AbstractTernary Cu(Sb,Bi)(S,Se)2 compounds such as CuSbS2, CuSbSe2, CuBiS2, and CuBiSe2, are potenti...
Cu{sub x}S is one of the most promising solar cell absorber materials that has the potential to repl...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
Among the thin-film solar cells, the maximum efficiencies are achieved by devices that use Cu(In,Ga)...
A fully self-contained study of the thermodynamic and electronic properties of intrinsic point defec...
Discovery of new semiconductor candidates with suitable band gaps is a challenge for optoelectronic ...
International audienceHerein we report a thorough investigation on Sb 2 Se 3, a promising absorber m...
Recently, CuSbS<sub>2</sub> has been proposed as an alternative earth-abundant absorber material for...
Global warming poses an existential threat to humanity and is inevitable unless significant efforts ...
Due to its attractive optical, electrical, and chemical properties, the ternary CuInSe2 (CIS) chalco...