[1] Wu. Xuanzhi, High-efficiency polycrystalline CdTe thin-film solar cells, Solar Energy, 77 (2004) 803–814.
[2] A. Nowshad, Y. Akira, K. Makoto, Effect of ZnTe and CdZnTe alloys at the Back Contact of 1-μm Thick CdTe Thin Film Solar Cells, Japanese journal of applied physics, 41.( 2002) 2834-2840.
[3] H. Sharafat, A. Nowshad, M. A. Matin, A numerical study on the prospects of high efficiency ultra thin ZnxCd1-xS/CdTe solar cell, Chalcogenide Letters, 8 (3) (2011) 263 – 272.
[4] A. Romeo, A.N. Tiwari, H. Zogg, Proceedings of the 2nd World Conference and Exhibition on Photovoltaic Solar Energy Conversion, Vienna,Austria, (1998) 1105-1108.
[5] C. Ferekides, J. Ma Y. Britt, L. Killian, High efficiency CdTe solar cells by close spaced sublimation, Proceedings of the 23rd IEEE Photovoltaic Specialists Conference, 1993.-New York, USA. 389 –393.
[6] http://www.pveducation.org/pvcdrom/solar-cell-operation/tandem-cells
[7] A. L. Fahrenbruch, R. H. Bube, Fundamentals of Solar Cells Photovoltaic Solar Energy Conversion, Fahrenbruch,A.- New York.- Academic Press,1983.
[8] P. Würfel, Physics of solar cells: From principles to new concepts, Wiley-VCH, 2005.
[9] J. F. Stephen, Solar cell device physics, 2nd edition.- USA. Elsevier, 2010.
[10] YJ.S. Tyan, E.A. Perez-Albuerne, Efficient thin film CdS/CdTe solar cells, Proceedings of 16th IEEE Photovoltaic Specialists Conference, IEEE Publishing, New York, (1982) 794.
[11] C. Ferekides, J. Britt, Y. Ma, L. Killian, High efficiency CdTe solar cells by close spaced sublimation, Proceedings of Twenty- Third-Photovoltaic-Specialists-Conference IEEE, New York, USA, (1993) 389.
[12] Wu Xuanzhi, High-efficiency polycrystalline CdTe thin-film solar cells, Solar Energy, 77 (2004) 803–814.
[13] HC. Chou, A. Rohatgi, NM Jokerst, EW. Thomas, S. Kamra. Copper Migration in CdTe Heterojunction Solar Cells. J. Electr. Mater. 25(7) (1996) 1093–1098.