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Modeling of the surface sulfurization of CIGSe-based solar cells

机译:基于CIGSe的太阳能电池表面硫化的建模

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The modeling of the effect of absorber surface sulfurization on state-of-the-art CIGSe-based solar cells is studied using the 1 dimensional modeling tool SCAPS 3.2. The evolution of the photovoltaic performance of the cell is modeled for different sulfur contents and sulfurization depth; these parameters are simultaneously varied to obtain a representation of the ideal conditions which maximize the solar cell efficiency. Different interface defect types are considered and the influence of the S atoms on the interface defects activation energy, as well as on the majority carrier concentration in the CIGSe film, is taken into account in our model. Most of the modeling parameters are determined from in-house measurements, especially concerning the evolution of the interface defects with the surface sulfurization. (C) 2014 Published by Elsevier Ltd.
机译:使用一维建模工具SCAPS 3.2,研究了吸收器表面硫化对基于CIGSe的最新太阳能电池的影响。针对不同的硫含量和硫化深度模拟了电池光伏性能的演变;同时改变这些参数以获得使太阳能电池效率最大化的理想条件的表示。考虑了不同的界面缺陷类型,并且在我们的模型中考虑了S原子对界面缺陷活化能以及CIGSe膜中多数载流子浓度的影响。大多数建模参数是通过内部测量确定的,特别是有关界面缺陷随表面硫化而演变的参数。 (C)2014由Elsevier Ltd.出版

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