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Title Optical Losses of Thin Solar Cells on the Basis of n-ZnS / p-CdTe and n-CdS / p-CdTe Heterojunctions
Authors Dobrozhan, Oleksandr Anatoliiovych  
Dobrozhan, Oleksandr Anatoliyovych
Berestok, Taisiia Oleksandrivna
Kurbatov, Denys Ihorovych  
Opanasiuk, Anatolii Serhiiovych  
Opanasiuk, Nadiia Mykolaivna
Nefedchenko, Vasyl Fedorovych
Keywords CdS / CdTe heterojunction
ZnS / CdTe heterojunction
Optical losses
Reflection coefficient
Transmittance
Absorption coefficient
Type Conference Papers
Date of Issue 2013
URI http://essuir.sumdu.edu.ua/handle/123456789/33898
Publisher Sumy State University Publishing
License
Citation Optical Losses of Thin Solar Cells on the Basis of n-ZnS / p-CdTe and n-CdS / p-CdTe Heterojunctions [Текст] / O.A. Dobrozhan, T.O. Berestok, D.I. Kurbatov, A.S. Opanasyuk, N.M. Opanasyuk, V.F. Nefedchenko // 3rd International Conference “Nanomaterials: Applications & Properties - 2013 (NAP-2013)”. – Alushta, the Crimea, Ukraine, 2013. — С. 04NEA16-1.
Abstract The optical reflection and absorption losses in the accessory layers of solar cells based on n-ZnS / p- CdTe and n-CdS / p-CdTe heterojunctions are defined in this work. Aluminum doped zinc oxide is used as the front conductive layer material. It is shown that the replacement of traditional window material (CdS) for a wide-one (ZnS) leads to an increase in accessory solar cells layers transmittance. When the thickness of the window layers is 50 nm, the transmittance using ZnS windows with the wavelength of 380-500 nm is higher in 7-40 % than the corresponding value for CdS. At 300 nm for the same spectral field the difference increases to 8-89 %. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/33898
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