双结太阳能电池发光耦合影响的研究

Ricardo T. Silvares Junior, D. Micha
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引用次数: 0

摘要

多结太阳能电池的概念已被证明是一种将太阳能转化为电能的非常有效的方法。使用详细平衡模型进行理论计算的目的是寻找最佳材料(就带隙能量而言)来组成器件结。然而,与其他简化一样,这种模型应用于多结太阳能电池时,没有考虑到一个重要的物理效应:结之间的发光耦合。在这项工作中,我们提出了一种基于自洽数值方法的方法来实现应用于多结太阳能电池的详细平衡模型中的发光耦合。我们展示了耦合因子和结带隙能量变化对不同双结太阳能电池性能影响的结果。因此,我们表明,发光耦合的主要影响是提高太阳能电池的短路电流,从而提高其转换效率。此外,我们强调该效应对导致低效率的带隙能量组合的影响更为重要。这是一个重要的结果,通过允许更多的组合来实现高效率的材料选择。
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Study on the Influence of the Luminescence Coupling in Dual Junction Solar Cells
The multijunction solar cell concept has proven to be a very efficient way of converting solar into electrical energy. Theoretical calculations using the detailed balance model aim in the optimization process of finding the best materials (in terms of bandgap energies) to compose the device junctions. However, along with other simplifications, such model applied to multijunction solar cells fails in considering one important physical effect: the luminescence coupling amongst the junctions. In this work, we present a method based on a self-consistent numerical approach for implementing the luminescence coupling in the detailed balance model applied to multijunction solar cells. We show results on the influence of the effect on the performance of different dual junction solar cells in which a coupling factor and the junction bandgap energies are varied. Therefore, we show that the main impact of the luminescence coupling is in the raise of the solar cell short circuit current, and consequently, their conversion efficiencies. Moreover, we highlight that the influence of the effect is more important for the bandgap energy combinations that would lead to low efficiencies. This is an important result towards the choice of materials by allowing more combinations to achieve high efficiencies.
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