Tandem solar cells are a key technology for exceeding the theoretical efficiency limit of single-junction cells. One of the most promising combinations is the silicon–perovskite tandem cells, considering their potential for high efficiency, fabrication on a large scale, and low cost. While most research focuses on improving each subcell, another key challenge lies in the tunnel junction that connects these subcells, significantly impacting the overall cell characteristics. Here, we demonstrate the first use of tunnel junctions using a stack of p+/n+ polysilicon passivating contacts deposited directly on the tunnel oxide to overcome the drawbacks of conventional metal oxide-based tunnel junctions, including low tunneling efficiency and sputt...
Passivating contacts based on thin tunneling oxides (SiOx) and n- and p-type semi-crystalline or pol...
International audienceIn this study, we developed a microcrystalline silicon tunnel junction to be u...
We report on the tunnel oxide passivated contact (TOPCon) using a crystalline nanostructured silicon...
A systematic study of the formation of the tunnel-junction for perovskite/TOPCon tandem solar cells ...
The kinetics controlling the electrical transport inside the μc-Si tunnel-recombination junction (TR...
International audienceLow-resistance c-Si Esaki tunnel junctions (TJ) can be applied in two-terminal...
2-terminal (2T) crystalline silicon (c-Si) based tandem solar cell is an approach to overcome the Sh...
Two terminal multi-junction (MJ) photovoltaic (PV) devices are well established concepts to increase...
Carrier-selective contact with low minority carrier recombination and efficient majority carrier tra...
Perovskite/silicon tandem solar cells have strong potential for high efficiency and low cost photovo...
International audienceIn this study, the optoelectronic properties of a monolithically integrated se...
Polysilicon recombination junctions whose n-type bottom layers double as a passivating contact to th...
Increasing the power conversion efficiency of silicon (Si) photovoltaics is a key enabler for contin...
In recent years, multijunction solar cells have shown outstanding capability to achieve remarkably h...
A new tunnel recombination junction is fabricated for n-i-p type micromorph tandem solar cells. We i...
Passivating contacts based on thin tunneling oxides (SiOx) and n- and p-type semi-crystalline or pol...
International audienceIn this study, we developed a microcrystalline silicon tunnel junction to be u...
We report on the tunnel oxide passivated contact (TOPCon) using a crystalline nanostructured silicon...
A systematic study of the formation of the tunnel-junction for perovskite/TOPCon tandem solar cells ...
The kinetics controlling the electrical transport inside the μc-Si tunnel-recombination junction (TR...
International audienceLow-resistance c-Si Esaki tunnel junctions (TJ) can be applied in two-terminal...
2-terminal (2T) crystalline silicon (c-Si) based tandem solar cell is an approach to overcome the Sh...
Two terminal multi-junction (MJ) photovoltaic (PV) devices are well established concepts to increase...
Carrier-selective contact with low minority carrier recombination and efficient majority carrier tra...
Perovskite/silicon tandem solar cells have strong potential for high efficiency and low cost photovo...
International audienceIn this study, the optoelectronic properties of a monolithically integrated se...
Polysilicon recombination junctions whose n-type bottom layers double as a passivating contact to th...
Increasing the power conversion efficiency of silicon (Si) photovoltaics is a key enabler for contin...
In recent years, multijunction solar cells have shown outstanding capability to achieve remarkably h...
A new tunnel recombination junction is fabricated for n-i-p type micromorph tandem solar cells. We i...
Passivating contacts based on thin tunneling oxides (SiOx) and n- and p-type semi-crystalline or pol...
International audienceIn this study, we developed a microcrystalline silicon tunnel junction to be u...
We report on the tunnel oxide passivated contact (TOPCon) using a crystalline nanostructured silicon...