We characterize and discuss the impact of hydrogenation on the performance of phosphorus-doped polycrystalline silicon (poly-Si) films for passivating contact solar cells. Combining various characterization techniques including transmission electron microscopy, energy-dispersive X-ray spectroscopy, low-temperature photoluminescence spectroscopy, quasi-steady-state photoconductance, and Fourier-transform infrared spectroscopy, we demonstrate that the hydrogen content inside the doped poly-Si layers can be manipulated to improve the quality of the passivating contact structures. After the hydrogenation process of poly-Si layers fabricated under different conditions, the effective lifetime and the implied open circuit voltage are improved for ...
Polysilicon (poly-Si) passivating contacts have enabled some of the highest lab-scale crystalline si...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Experimental evidence that phosphorus in silicon is neutralized by hydrogenation is presented by mea...
We characterize and discuss the impact of hydrogenation on the performance of phosphorus-doped polyc...
In c-Si solar cells, doped poly-Si/SiOx stacks both form carrier selective junctions and provide ex...
Hydrogen-assisted defect engineering, via a hydrogenated silicon nitride (SiNx:H) capping layer, on ...
Doped polycrystalline silicon (poly-Si), when coupled with a thin SiO2 interlayer, is of large inter...
Doped polycrystalline silicon (poly-Si), when coupled with a thin SiO2 interlayer, is of large inter...
M.Sc.Techniques for the fabrication of polycrystalline silicon solar cells have advanced in recent y...
Herein, posttreatment techniques of phosphorus-doped poly-Si/SiOx passivating contacts, including fo...
We report detailed studies of hydrogen passivation of polycrystalline silicon wafers by RF plasma an...
Hydrogen passivation can drastically improve the device performance of polycrystalline Si poly Si ...
The purpose of this thesis is to improve electronic quality of polycrystalline silicon thin film sol...
High-temperature firing treatment used in commercial screen-printed solar cells can directly deterio...
Polysilicon (poly-Si) passivating contacts have enabled some of the highest lab-scale crystalline si...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Experimental evidence that phosphorus in silicon is neutralized by hydrogenation is presented by mea...
We characterize and discuss the impact of hydrogenation on the performance of phosphorus-doped polyc...
In c-Si solar cells, doped poly-Si/SiOx stacks both form carrier selective junctions and provide ex...
Hydrogen-assisted defect engineering, via a hydrogenated silicon nitride (SiNx:H) capping layer, on ...
Doped polycrystalline silicon (poly-Si), when coupled with a thin SiO2 interlayer, is of large inter...
Doped polycrystalline silicon (poly-Si), when coupled with a thin SiO2 interlayer, is of large inter...
M.Sc.Techniques for the fabrication of polycrystalline silicon solar cells have advanced in recent y...
Herein, posttreatment techniques of phosphorus-doped poly-Si/SiOx passivating contacts, including fo...
We report detailed studies of hydrogen passivation of polycrystalline silicon wafers by RF plasma an...
Hydrogen passivation can drastically improve the device performance of polycrystalline Si poly Si ...
The purpose of this thesis is to improve electronic quality of polycrystalline silicon thin film sol...
High-temperature firing treatment used in commercial screen-printed solar cells can directly deterio...
Polysilicon (poly-Si) passivating contacts have enabled some of the highest lab-scale crystalline si...
International audiencePassivating the contacts of crystalline silicon (c-Si) solar cells (SC) with a...
Experimental evidence that phosphorus in silicon is neutralized by hydrogenation is presented by mea...