碲化镉光电
材料科学
太阳能电池
光电子学
光伏系统
开路电压
图层(电子)
能量转换效率
电容
短路
硒化铜铟镓太阳电池
电流密度
太阳能电池理论
半导体
电压
太阳能电池效率
电极
复合材料
电气工程
化学
物理化学
工程类
物理
量子力学
作者
Othmane Skhouni,A. El Manouni,Bernabé Marí Soucase,Hanif Ullah
出处
期刊:European Physical Journal-applied Physics
[EDP Sciences]
日期:2015-09-03
卷期号:74 (2): 24602-24602
被引量:33
标识
DOI:10.1051/epjap/2015150365
摘要
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. The simulation of its performance is realized by means of various numerical modelling programs. We have modelled a solar cell based on zinc telluride (ZnTe) thin film as absorber in substitution to the CdTe material, which contains the cadmium element known by its toxicity. The performance of such photovoltaic device has been numerically simulated and the thickness of the absorber layer has been optimized to give the optimal conversion efficiency. A photovoltaic device consisting of a ZnTe layer as absorber, CdS as the buffer layer and ZnO as a window layer was modelled through Solar Cell Capacitance Simulator Software. Dark and illuminated I-V characteristics and the results for different output parameters of ZnO/CdS/ZnTe solar cell were analyzed. The effect of ZnTe absorber thickness on different main working parameters such as: open-circuit voltage Voc, short-circuit current density Jsc, fill factor FF, photovoltaic conversion efficiency η was intensely studied in order to optimize ZnTe film thickness. This study reveals that increasing the thickness of ZnTe absorber layer results in higher efficiency until a maximum value and then decreases slightly. This maximum was found to be 10% at ZnTe optimum thickness close to 2 µm.
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