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Optical Losses of Frontal Layers in Superstrate CdS/CdTe Solar Cells Using OPAL2

机译:使用OPAL2的超级晶体CDS / CDTE太阳能电池中额层的光学损失

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In this paper, optical losses in CdS/CdTe solar cells are calculated on the basis of the designated reflective index of various frontal layers using an OPAL2 calculator for the first time. Two types of glass (0.1 mm ultra-thin Schott and 1.1 mm standard borosilicate glass) were assumed to be coated by different Transparent-Conducting-Oxides (TCOs) such as SnO2:F, ZnO:Al, and ITO forming frontal layers for CdS/CdTe solar cells in superstrate configuration. Absorption, reflectance, transmittance, and consequently optical bandgap energies are calculated as a function of common thicknesses, used in the literature. The results show that an increase in TCO thickness led to a decrease in optical band gap as well as an enhancement in contact potential difference, which can deteriorate device performance. The optimum thickness of 100 nm for SnO2:F was calculated, while 200 nm for ZnO:Al and ITO show reasonable optical losses caused by reflections at the interfaces’ and the layer’s absorption. It is seen that 80 to 150 nm CdS on ITO might be an effective range to satisfy a high short circuit current and low defect densities at the CdS/CdTe interface. Finally, a minimum 2 μm thickness for the CdTe on the ultra-thin Schott glass coated by optimum layers can result in the highest short circuit current of 28.69 mA/cm2. This work offers a practical equivalent strategy to be applied for any superstrate solar cells containing TCO and CdS frontal layers.
机译:本文首次使用OPAL2计算器的基于各种额度层的指定反射指数计算CDS / CDTE太阳能电池中的光学损耗。假设两种玻璃(0.1mm超薄Schott和1.1mm标准硼硅酸盐玻璃)通过不同的透明导电氧化物(TCO),例如SnO2:F,ZnO:Al和ITO为CD的正面层涂覆/ Cdte在超级替代配置中的太阳能电池。吸收,反射率,透射率和所以光学带隙能量作为文献中使用的公共厚度的函数计算。结果表明,TCO厚度的增加导致光带隙的降低以及接触电位差的增强,这可以劣化装置性能。计算出SnO2:F的最佳厚度为100nm,而ZnO的200nm:Al和ITO显示由界面的反射引起的合理的光学损失,而层的吸收。可以看出,ITO上的80至150nm CD可以是满足CDS / CDTE接口处的高短路电流和低缺陷密度的有效范围。最后,通过最佳层涂覆的超薄Schott玻璃上的CDTE上的最小2μm厚度可导致28.69mA / cm2的最高短路电流。这项工作提供了一种实用的等效策略,适用于含有TCO和CDS1层的任何超级定型太阳能电池。

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