Biblio

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M. A. Green, «The path to 25% silicon solar cell efficiency: History of silicon cell evolution», Progress in Photovoltaics: Research and Applications, т. 17, с. 183-189, 2009.
R. Sekuler и Blake, R., Perception. New York: Alfred A. Knopf Inc, 1985.
S. M. Hu, Fahey, P., и Sutton, P., «On Phosphorus Diffusion in Silicon», On Phosphorus Diffusion in Silicon, т. 54, с. 6912-6922, 1983.
E. F. Kingsbury и Ohl, R. S., «Photoelectric Properties of Tonically Bombarded Silicon», Bell Systems Technical Journal, т. 31, с. 802-815, 1952.
T. Fuyuki, Kondo, H., Yamazaki, T., Takahashi, Y., и Uraoka, Y., «Photographic surveying of minority carrier diffusion length in polycrystalline silicon solar cells by electroluminescence», Applied Physics Letters, т. 86, с. 262108, 2005.
A. Goetzberger и Hoffmann, V. U., «Photovoltaic Solar Energy Generation», с. 232, 2005.
M. A. Green, «Photovoltaics: Coming of Age», 21st IEEE Photovoltaic Specialists Conference. Orlando, USA, с. 1-8, 1990.
SERI, Photovoltaics for Residential Applications. Golden, Colorado: Solar Energy Research Institute, 1984.
J. G. Fossum, «Physical operation of back-surface-field silicon solar cells», IEEE Transactions on Electron Devices, т. 24, с. 322 - 325, 1977.
J. Nelson, «The Physics of Solar Cells», с. 355, 2003.
P. Würfel, «Physics of Solar Cells», с. 183, 2009.
R. Chandramohan, Sanjeeviraja, C., и Mahalingam, T., «Preparation of Zinc Selenide Thin Films by Electrodeposition Technique for Solar Cell Applications», physica status solidi (a), т. 163, № 2, с. R11 - R12, 1997.