Semiconductor Physics, Quantum Electronics & Optoelectronics. 2011. V. 14, N 1. P. 122-126.
https://doi.org/10.15407/spqeo14.01.122



References 

1. K.J. Price, Effect of CdCl 2 treatment on the interior of CdTe crystals . Proc. Materials Research Society Symposium, San Francisco (USA), 2001, p. H1.6.1–H1.6.12. 2. A. Compaan, A. Bhat, Laser-driven physical vapor deposition for thin film CdTe solar cells. Intern. J. Solar Energy, 21, p. 155-169 (1992).
 
3. N. Romeo, A. Bosio, V. Canevari, Large crystalline grain CdTe thin film for photovoltaic application. Intern. J. Solar Energy, 21, p. 183-186 (1992).
https://doi.org/10.1080/01425919208909761
 
4. T.X. Zhou, N. Reiter, R.C. Powell, R. Sasala, P.V. Meyers, Vapor chloride treatment of poly- crystalline CdTe/CdS films . Proc. First World Conference on Photovoltaic Energy Conversion (WCPEC), Hawaii (USA), 1994, p. 103-106.
 
5. L.R. Cruz, R.R. Avillez, H.R. Moutinho, F. Hasoon, R.G. Dhere, L.L. Kazmerski, The effects of CdCl 2 treatment on the structural and optical properties of CdTe films deposited by stacked elemental layer processing . Proc. 2 nd World Conference on Photovoltaic Solar Energy Conversion, Vienna (Austria), 1998, p. 1067-1070.
 
6. B.E. McCandless, I. Youm, R.W. Birkmire, Optimization of vapor post-deposition for evaporated CdS/CdTe solar cells . Processing Progress in Photovoltaic: Research and Application, 7, p. 21-30 (1999).
https://doi.org/10.1002/(SICI)1099-159X(199901/02)7:1<21::AID-PIP244>3.0.CO;2-D
 
7. A. Romeo, D.L. Batrner, H. Zogg, A.N. Tiwarin, Recrystallization in CdS/CdTe. Thin Solid Films, 361–362, p. 420-425 (2000).
https://doi.org/10.1016/S0040-6090(99)00753-1
 
8. A. Rohatgi, R. Sudharsanan, S.A. Ringel, M.H. MacDougal, Growth and process optimization of CdTe and CdZnTe polycrystalline for high efficiency solar cells . Solar Cells, 30, p. 109-122 (1990).
https://doi.org/10.1016/0379-6787(91)90043-O
 
9. A. Sandhu, K. Kobayashi, T. Okamoto, Effect of CdCl 2 treatment conditions on the deep level density, carrier lifetime and conversion efficiency of CdTe thin film solar cells . Proc. Materials Research Society Symposium, San Francisco (USA), 2001, p. H8.13.1-H8.13.6.
 
10. R.W. Birkmire, P.V. Meyers, Processing Issues for thin film CdTe cells and modules . Proc. First World Conference on Photovoltaic Energy Con- version (WCPEC), Hawaii (USA), 1994, p. 76-81.
https://doi.org/10.1109/wcpec.1994.519812
 
11. N. Romeo, A. Bosio, A. Romeo, S. Mazzamuto, Industrial upscaling of CdTe/CdS thin film solar cells . Proc. 21 th European Photovoltaic Solar Energy Conference, Dresden (Germany), 2006, p. 1806-1809.
 
12. H.S. Raushenbach, Solar Cells Array Design. Litton Education Publishing, New York, p. 250, 1980.
https://doi.org/10.1007/978-94-011-7915-7
 
13. G. Khrypunov, B. Boyko, O. Chernykh, A. Meriuts, The simulation of diode parameters influence on photovoltaic characteristics on the Cu(In,Ga)Se 2 thin film solar cells . Proc. 17 th European Photovoltaic Solar Energy Conversion and Exhibition, Munich (Germany), 2001, p. 1140- 1142.
 
14. H.R. Moutinho, F.S. Hasoon, F. Abulfotuh and K. Kazmerski, Investigation of polycrystalline CdTe thin films deposited by physical vapor deposition, close-space sublimation, and sputtering // J. Vacuum Sci. Technology A, 13(6), p. 2877- 2883 (1995).
https://doi.org/10.1116/1.579607
 
15. D.L. Bätzner, A. Romeo, M. Terheggen, M. Dobeli, H. Zogg, A.N. Tiwari, Stability aspect in CdS/CdTe solar cells . Thin Solid Films, 451- 452, p. 536-543 (2004)