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Title |
Transition metal oxides-based passivating contacts for 21.9%-efficient, n-type solar cell |
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Detail |
An Australian research group has shown how passivating contacts based on transition metal oxides could replace contacts based on doped hydrogenated amorphous silicon or polycrystalline silicon in n-type solar cells in the future. They designed a cell with an open-circuit voltage of 665 mV, a short-circuit current of 40.78 mA cm−2, and a fill factor of 80.8%.
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Country | ||||
Source | PV-Magazine | |||
Regions | Africa Asia Australia Europe North America Oceania South America | |||
Sectors | Non-Renewable Energy Solar Photovoltaic PV Energy Infrastructure Construction Computer Hardwares and Consumables Petroleum Products | |||
Published Date | 08.11.2022 | |||
Original Url | Original Url | |||
Share |
Title |
---|
Transition metal oxides-based passivating contacts for 21.9%-efficient, n-type solar cell
|
Detail |
An Australian research group has shown how passivating contacts based on transition metal oxides could replace contacts based on doped hydrogenated amorphous silicon or polycrystalline silicon in n-type solar cells in the future. They designed a cell with an open-circuit voltage of 665 mV, a short-circuit current of 40.78 mA cm−2, and a fill factor of 80.8%. |
Country |
International
|
Source |
PV-Magazine |
Regions |
Africa Asia Australia Europe North America Oceania South America |
Sectors |
Non-Renewable Energy Solar Photovoltaic PV Energy Infrastructure Construction Computer Hardwares and Consumables Petroleum Products |
Published Date |
08.11.2022 |
Original Url |
Share |
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