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Advanced characterization of multijunction solar cells with electroluminescence

机译:具有电致发光的多结太阳能电池的高级表征

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Characterization is a key process in attaining high efficiency in state-of-the-art multijunction solar cells. However, the characterization of these devices using methods involving optical excitation and measurements of optical response is challenging and time consuming. For instance the experimental access to information about individual subcells is difficult to attain with common methods. This work will present how the characterization of these devices benefits from the use of electroluminescence spectroscopy (EL). In this study we use a low cost EL set-up -which could be easily integrated in any in-line characterization tool at a manufacturing site-to derive the individual performance of each subcell in the multijunction stack. Using electroluminescence measurements, the external quantum efficiency of each subcell, the current-voltage curve of each subcell and the individual quality factors of each subcell are calculated.
机译:表征是在最先进的多结太阳能电池中获得高效率的关键过程。然而,使用涉及光学激励​​和光学响应的​​测量的方法的这些装置的表征是具有挑战性和耗时的。例如,对各个子单元的信息的实验访问难以实现常用方法。这项工作将介绍这些设备的表征如何利用电致发光光谱(EL)。在这项研究中,我们使用低成本的EL设置 - 可以在制造站点的任何在线表征工具中轻松集成 - 从多结堆叠中导出每个子单元的各个性能。计算使用电致发光测量,计算每个子单元的外部量子效率,每个子单元的电流电压曲线以及每个子单元的各个质量因子。

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