Biblio

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Journal Article
S. W. Glunz, Rein, S., Warta, W., Knobloch, J., and Wettling, W., Degradation of carrier lifetime in Cz silicon solar cells, Solar Energy Materials and Solar Cells, vol. 65, pp. 219 - 229, 2001.
T. S. Lewkebandara and Winter, C. H., CVD routes to titanium disulfide films, Advanced Materials, vol. 6, no. 3, pp. 237 - 239, 1994.
S. Wagner, Shay, J. L., Migliorato, P., and Kasper, H. M., CuInSe2/CdS heterojunction photovoltaic detectors, Applied Physics Letters, vol. 25, pp. 434–435, 1974.
S. Chen, Gong, X. G., Walsh, A., and Wei, S. - H., Crystal and electronic band structure of Cu2ZnSnX4 (X= S and Se) photovoltaic absorbers: first-principles insights, Applied Physics Letters, vol. 94, p. 41903, 2009.
S. Chen, Gong, X. G., Walsh, A., and Wei, S. - H., Crystal and electronic band structure of Cu2ZnSnX4 (X= S and Se) photovoltaic absorbers: first-principles insights, Applied Physics Letters, vol. 94, p. 41903, 2009.
F. V. Wald, Bullitt, J., and Bell, R. O., Bi2S3 as a high Z material for γ-ray detectors, IEEE Transactions on Nuclear Science, vol. 22, no. 1, pp. 246 - 250, 1975.
M. Rieder, Crelling, J. C., Šustai, O., Drábek, M., Weiss, Z., and Klementová, M., Arsenic in iron disulfides in a brown coal from the North Bohemian Basin, Czech Republic, International Journal of Coal Geology, vol. 71, no. 2-3, pp. 115 - 121, 2007.
S. R. Wenham, Green, M. A., Watt, M. E., and Corkish, R., Applied Photovoltaics, p. 317, 2007.
S. R. Wenham, Green, M. A., Watt, M. E., and Corkish, R., Applied Photovoltaics, p. 317, 2007.
J. Zhao, Wang, A., and Green, M. A., 24.5% efficiency PERT silicon solar cells on SEH MCZ substrates and cell performance on other SEH CZ and FZ substrates, Solar Energy Materials and Solar Cells, vol. 66, pp. 27 - 36, 2001.
J. Zhao et al., 20,000 PERL silicon cells for the "1996 World Solar Challenge" solar car race, Progress in Photovoltaics: Research and Applications, vol. 5, pp. 269–276, 1997.
J. Zhao et al., 20,000 PERL silicon cells for the "1996 World Solar Challenge" solar car race, Progress in Photovoltaics: Research and Applications, vol. 5, pp. 269–276, 1997.
J. Zhao, Wang, A., Green, M. A., and Ferrazza, F., 19.8% efficient "honeycomb" textured multicrystalline and 24.4% monocrystalline silicon solar cells, Applied Physics Letters, vol. 73, pp. 1991-1993, 1998.
J. C. Zolper, Narayanan, S., Wenham, S. R., and Green, M. A., 16.7% efficient, laser textured, buried contact polycrystalline silicon solar cell, Applied Physics Letters, vol. 55, p. 2363, 1989.
Conference Proceedings
T. Takamoto et al., World’s Highest Efficiency Triple-junction Solar Cells Fabricated by Inverted Layers Transfer Process, 35 IEEE Photovoltaic Specialist Conference. Honolulu HI, USA, 2010.
E. Y. Wang, Yu, F. T. S., Sims, V. L., Brandhorst, E. W., and Broder, J. D., Optimum Design of Anti-reflection coating for silicon solar cells, 10th IEEE Photovoltaic Specialists Conference. pp. 168-171, 1973.
F. Dimroth et al., METAMORPHIC GaInP/GaInAs/Ge TRIPLE-JUNCTION SOLAR CELLS WITH > 41 % EFFICIENCY, 34th IEEE Photovoltaic Specialists Conference. 2009.
F. Dimroth et al., METAMORPHIC GaInP/GaInAs/Ge TRIPLE-JUNCTION SOLAR CELLS WITH > 41 % EFFICIENCY, 34th IEEE Photovoltaic Specialists Conference. 2009.
J. Zhao, A., W., Dai, X., Green, M. A., and Wenham, S. R., Improvements in Silicon Solar Cell Performance, 22nd IEEE PV Specialists Conference. pp. 399-402, 1991.
M. Wolf, Historical Development of Solar Cells. IEEE Press, 1976.
C. B. Honsberg, Anwar, K. K., Mehrvarz, H. R., Cotter, J. E., and Wenham, S. R., Dependence of aluminium alloying on solar cell processing conditions, 13th Workshop on Crystalline Silicon Solar Cell Materials and Processes. 2003.
H. J. Wenger, Schaefer, J., Rosenthal, A., Hammond, B., and Schlueter, L., Decline of the Carrisa Plains PV Power Plant: The Impact of Concentrating Sunlight on Flat Plates, 22nd IEEE Photovoltaic Specialists Conference. Las Vegas, USA, pp. 586-592, 1991.
J. H. Wohlgemuth and Narayanan, S., Buried contact concentrator solar cells, Twenty Second IEEE Photovoltaic Specialists Conference, vol. 1. pp. 273-277, 1991.
J. Zhao, Wang, A., and Green, M. A., 19.8% Efficient Multicrystalline Silicon Solar Cells with Honeycomb Textured Front Surface, 2nd World Conference and Exhibition on Photovoltaic Solar Energy Conversion. Vienna, Austria, 1998.
S. Narayanan et al., 18% efficient polycrystalline silicon solar cells, Twenty First IEEE Photovoltaic Specialists Conference, vol. 1. pp. 678-680, 1990.

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