The integration of III-V multi-junction solar cells on Si substrates is currently one of the most promising possibilities to combine high photovoltaic performance with a reduction of the manufacturing costs. In this work, we propose a prospective study for the realization of an InP/InGaAs tandem solar cell lattice-matched to InP on a commercially available Si template by direct MOVPE growth. The InP top cell and the InGaAs bottom cell were firstly separately grown and optimized using InP substrates, which exhibited conversion efficiencies of 13.5% and 11.4%, respectively. The two devices were then combined in a tandem device by introducing an intermediate InP/AlInAs lattice-matched tunnel junction, showing an efficiency of 18.4%. As an inte...
Tandem GaInP/GaAs//Si(inactive) solar cells were manufactured by direct wafer bonding under vacuum. ...
International audienceThe growing interest in new concepts of III-V/Si tandem solar cells arises fro...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....
International audienceThe integration of III-V multi-junction solar cells on Si substrates is curren...
An affinity for high performance solar cells in the space market, as well as the development of new ...
InP/Si engineered substrates formed by wafer bonding and layer transfer have the potential to signif...
This thesis focuses on III-V/Si integration of single- and dual-junction solar cells by Metalorganic...
Solar Energy is a clean and abundant energy source that can help reduce reliance on fossil fuels aro...
InP/Si substrates were fabricated through wafer bonding and helium-induced exfoliation of InP, and I...
This project focuses on the investigation of Silicon based Tandem solar cell fabricated by using the...
Epitaxial growth of III-V materials on silicon (Si) presents an elegant pathway in order to develop ...
The commercial application of Indium Phosphide solar cells in practical space missions is crucially ...
Tandem GaInP/GaAs//Si(inactive) solar cells were manufactured by direct wafer bonding under vacuum. ...
International audienceThe growing interest in new concepts of III-V/Si tandem solar cells arises fro...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....
International audienceThe integration of III-V multi-junction solar cells on Si substrates is curren...
An affinity for high performance solar cells in the space market, as well as the development of new ...
InP/Si engineered substrates formed by wafer bonding and layer transfer have the potential to signif...
This thesis focuses on III-V/Si integration of single- and dual-junction solar cells by Metalorganic...
Solar Energy is a clean and abundant energy source that can help reduce reliance on fossil fuels aro...
InP/Si substrates were fabricated through wafer bonding and helium-induced exfoliation of InP, and I...
This project focuses on the investigation of Silicon based Tandem solar cell fabricated by using the...
Epitaxial growth of III-V materials on silicon (Si) presents an elegant pathway in order to develop ...
The commercial application of Indium Phosphide solar cells in practical space missions is crucially ...
Tandem GaInP/GaAs//Si(inactive) solar cells were manufactured by direct wafer bonding under vacuum. ...
International audienceThe growing interest in new concepts of III-V/Si tandem solar cells arises fro...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....