CdTe defect chemistry is adjusted by annealing samples with excess Cd or Te vapor with and without extrinsic dopants. We observe that Group I (Cu and Na) elements can increase hole density above 1016 cm−3, but compromise lifetime and stability. By post-deposition incorporation of a Group V dopant (P) in a Cd-rich ambient, lifetimes of 30 ns with 1016 cm−3 hole density are achieved in single-crystal and polycrystalline CdTe without CdCl2 or Cu. Furthermore, phosphorus doping appears to be thermally stable. This combination of long lifetime, high carrier concentration, and improved stability can help overcome historic barriers for CdTe solar cell development
The efficiency of cadmium telluride (CdTe) solar cells is limited primarily by voltage, which is kno...
CdTe/CdS solar cells have shown great potential for terrestrial solar power applications. To be comm...
Thanks to the high efficiencies achieved and to the low cost of industrial production, CdTe photovol...
The Cadmium Telluride thin film solar cell is one of the leading photovoltaic technologies. Efficien...
Careful analysis of the Cd-Te P-T-X phase diagram, allows us to prepare conducting p- and n-type CdT...
Careful analysis of the Cd-Te P-T-X phase diagram, allows us to prepare conducting p- and n-type CdT...
Cadmium Telluride (CdTe) is a leading thin film photovoltaic (PV) material due to its near ideal ban...
Careful analysis of the Cd-Te pressure-temperature-composition phase diagram, shows a deviation of C...
Cadmium Telluride (CdTe), a chalcogenide semiconductor, is currently used as the absorber layer in o...
Experimental conditions for the growth of near stoichiometric high-resistivity CdTe single crystals ...
Experimental conditions for a growth of near stoichiometric high resistive CdTe single crystals with...
International audienceCdTe photovoltaics has achieved one of the lowest levelized costs of electrici...
Doping of CdTe using Group-V elements (As, P, and Sb) has gained interest in pursuit of increasing t...
We are engaged in a program directed toward the preparation and the experimental study of p-n graded...
CdTe and related alloy crystals with large single grain areas have been grown and characterized. Zin...
The efficiency of cadmium telluride (CdTe) solar cells is limited primarily by voltage, which is kno...
CdTe/CdS solar cells have shown great potential for terrestrial solar power applications. To be comm...
Thanks to the high efficiencies achieved and to the low cost of industrial production, CdTe photovol...
The Cadmium Telluride thin film solar cell is one of the leading photovoltaic technologies. Efficien...
Careful analysis of the Cd-Te P-T-X phase diagram, allows us to prepare conducting p- and n-type CdT...
Careful analysis of the Cd-Te P-T-X phase diagram, allows us to prepare conducting p- and n-type CdT...
Cadmium Telluride (CdTe) is a leading thin film photovoltaic (PV) material due to its near ideal ban...
Careful analysis of the Cd-Te pressure-temperature-composition phase diagram, shows a deviation of C...
Cadmium Telluride (CdTe), a chalcogenide semiconductor, is currently used as the absorber layer in o...
Experimental conditions for the growth of near stoichiometric high-resistivity CdTe single crystals ...
Experimental conditions for a growth of near stoichiometric high resistive CdTe single crystals with...
International audienceCdTe photovoltaics has achieved one of the lowest levelized costs of electrici...
Doping of CdTe using Group-V elements (As, P, and Sb) has gained interest in pursuit of increasing t...
We are engaged in a program directed toward the preparation and the experimental study of p-n graded...
CdTe and related alloy crystals with large single grain areas have been grown and characterized. Zin...
The efficiency of cadmium telluride (CdTe) solar cells is limited primarily by voltage, which is kno...
CdTe/CdS solar cells have shown great potential for terrestrial solar power applications. To be comm...
Thanks to the high efficiencies achieved and to the low cost of industrial production, CdTe photovol...