Semiconductor Physics, Quantum Electronics & Optoelectronics. 2015. V. 18, N 1. P. 101-105.
https://doi.org/10.15407/spqeo18.01.101


                                                                 

References

1. Kasturi Lal Chopra, Suhit Ranjan Das, Thin Film Solar Cells. Plenum Press, New York, London (1983).
 
2. B.T. Boyko, V.B. Yurchenko, G.I. Kopach, A.S. Opanasjuk, G.S. Hripunov, V.A. Polotski, Photoelectric properties of CdTe-based film heterojunctions with graded-gap interlayers. Bulg. J. Phys. 14(2), p. 157-162 (1987), in Russian.
 
3. D. Bonnet, P. Meyers, Cadmium telluride − materials for thin film solar cells. J. Mater. Res. 13(10), p. 2740-2753 (1999).
https://doi.org/10.1557/JMR.1998.0376
 
4. A. Romeo, D.L. Bätzner, H. Zogg, A.N. Tiwari, A comparison of the vacuum evaporated CdTe substrate and superstrate solar cells, in: Proc. 16th European Photovoltaic Solar Energy Conf. and Exhibition (Glasgow, 2000), p. 843-846.
 
5. G.S. Khripunov, B.T. Boyko, Flexible ITO/CdS/CdTe/Cu/Au solar cells with high specific power. Fizicheskaya Inzheneriya Poverkhnosti, 2(1-2), p. 69-73 (2004), in Russian.
 
6. G.S. Khrypunov, E.P. Chernykh, N.A. Kovtun, E.K. Belonogov, Flexible solar cells based on cadmium sulfide and telluride. Fiz. Tekh. Poluprovod., 43(8), p. 1084-1089 (2009), in Russian [Semiconductors, 43(8), p. 1046-1051 (2009)].
https://doi.org/10.1134/s1063782609080156
 
7. J.G. Werthen, J.P. Haring, A.L. Fahrenbruch, R.H. Bube, Surface effects on metal-CdTe junctions and CdTe heterojunctions. J. Phys. D.: Appl. Phys. 16(12), p. 2391-2404 (1983).
https://doi.org/10.1088/0022-3727/16/12/017
 
8. J.P. Ponpon. P. Siffert, Barrier heights on cadmium telluride Schottky solar cells. Rev. Phys. Appl. 12(2), p. 427-430 (1977).
https://doi.org/10.1051/rphysap:01977001202042700
 
9. G. Fulop, M. Doty, P. Meyers, J. Betz, C.H. Liu, High-efficiency electrodeposited cadmium telluride solar cells. Appl. Phys. Lett. 40(4), p. 327-328 (1982).
https://doi.org/10.1063/1.93085
 
10. Yu.N. Bobrenko, A.M. Pavelets, S.Yu. Pavelets, V.M. Tkachenko, Short-wavelength photo-sensitivity of surface-barrier structures with degenerate semiconductor-semiconductor junctions. Pis'ma v ZhTF, 20(12), p. 9-13 (1994) (in Russian); Tech. Phys. Lett. 20, p. 477-480 (1994).
 
11. Yu.N. Bobrenko, S.Yu. Pavelets, A.M. Pavelets, The efficient photoelectric converters of UV radiation with ZnS-based graded-gap layers. Fizika Tekhnika Poluprovod., 43(8), p. 830-835 (2009), in Russian [Semiconductors, 43, p. 801-805 (2009)].
 
12. Yu.N. Bobrenko, S.Yu. Pavelets, A.M. Pavelets, M.P. Kiselyuk, N.V. Yaroshenko, Efficient photoelectric converters of ultraviolet radiation based on ZnS and CdS with low-resistivity surface layers. Fizika Tekhnika Poluprovod., 44(8), p. 1114-1117 (2010) (in Russian); Semiconductors, 44(8), p. 1080-1083 (2010).
https://doi.org/10.1134/S1063782610080221
 
13. Yu.N. Bobrenko, S.Yu. Pavelets, A.M. Pavelets, N.V. Yaroshenko, Photoelectric converters with graded-gap layers based on ZnSe. Semiconductors, 47(10), p. 1372-1375 (2013).
https://doi.org/10.1134/S1063782613100047
 
14. Physics of II-VI Compounds, ed. by A.N. Georgobiani and M.K. Sheinkman. Nauka, Moscow, 1986 (in Russian).
 
15. W.W. Gartner, Depletion-layer photoeffects in semiconductors. Phys. Rev. 116(1), p. 84-87 (1959).
https://doi.org/10.1103/PhysRev.116.84

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