Emitter design for high-efficiency silicon solar cells. Part 2: Space cells

Author:

Wang Aihua,Zhao Jianhua,Green M. A.

Publisher

Wiley

Subject

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

Reference10 articles.

1. and , ‘24% Efficient PERL structure silicon solar cells’, Conference Record of the 21st IEEE Photovoltaic Specialists Conference, Orlando, pp. 333–335, May 1990.

2. Emitter design for high-efficiency silicon solar cells. Part I: Terrestrial cells

3. , , , , , and , ‘An evaporated aluminium metallization for high efficiency GaAs solar cells’, Conference Record of the 21st IEEE Photovoltaic Specialists Conference, Orlando, pp. 115–118, May 1990.

4. , , , and , ‘Advances in high-efficiency GaAs solar cells’, Conference Record of the 21st IEEE Photovoltaic Specialists Conference, Orlando, pp. 158–162, May 1990.

5. , , and , Solar Cell Radiation Handbook, JPL Publication no. 82–69, Jet Propulsion Laboratory, California Institue of Technology, 1982.

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1. Silicon space solar cells: progression and radiation-resistance analysis;Journal of the Korean Physical Society;2016-02

2. Recent advances in solar cell technology;Journal of Propulsion and Power;1996-09

3. Recent advances in solar cell technology;33rd Aerospace Sciences Meeting and Exhibit;1995-01-09

4. Future use of silicon solar cells in extraterrestrial applications;Progress in Photovoltaics: Research and Applications;1994-04

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