Front and rear silicon-nitride-passivated multicrystalline silicon solar cells with an efficiency of 18.1%

Author:

Mittelstädt L.,Dauwe S.,Metz A.,Hezel R.,Häßler C.

Funder

State of Niedersachsen

Bundesministerium für Bildung, Wissenschaft, Forschung, und Technologie

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference10 articles.

1. A 19.8% efficient honeycomb multicrystalline silicon solar cell with improved light trapping;Zhao;IEEE Transactions on Electron Devices,1999

2. Rohatgi A Narasimha S Kamra S Doshi P Khattak CP Emery K Field H Record high 18ċ6% efficient solar cell on HEM multicrystalline material Proceedings of the 25th IEEE Photovoltaic Specialists Conference 1996 741 744

3. Stocks M Blakers A Cuevas A High efficiency, reduced rear contact area multicrystalline silicon solar cells Proceedings of the 14th European Photovoltaic Specialists Conference 1997 766 769

4. Record low surface recombination velocities on 1 Ωcm p-silicon using remote plasma silicon nitride passivation;Lauinger;Applied Physics Letters,1996

5. Metz A Hezel R Record efficiencies above 21% for MIS-contacted diffused junction silicon solar cells Proceedings of the 26th IEEE Photovoltaic Specialists Conference 1997 283 286

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