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First-Order Calculations of Performance Metrics of Perovskite/Si Tandem Solar Cells

机译:Perovskite / Si串联太阳能电池性能度量的一阶计算

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The impressive optoelectronic properties of perovskite along with its optimal bandgap for application in a tandem solar cell has resulted in a lot of research interest in the field of perovskite/Si tandem solar cells. However, due to the lack of clarity of the design space optimization, the progress in the area is slow. In that context, here, we calculate the limiting performance metrics of perovskite/Si tandem solar cell as a function of active layers thicknesses and accordingly identify the optimum thicknesses of the active layer. Our results show that while the thickness of perovskite affects the performance of the device largely, the effect of the thickness of Si is nominal. Further, due to the increase in the two counter processes i.e., generation rate and recombination rate in the device with the thickness, there exist a pair of optimum thickness; and we elucidate the same. Indeed, our modelling methodology and results provide the direction for design space optimization of the perovskite/Si tandem solar cells.
机译:钙钛矿的令人印象深刻的光电性能以及其在串联太阳能电池中的最佳带隙,导致佩罗夫斯基特/ Si串联太阳能电池领域的大量研究兴趣。然而,由于设计空间优化缺乏清晰度,该地区的进展缓慢。在此,在这里,我们计算佩罗夫斯基特/ Si串联太阳能电池的限制性能度量作为有源层厚度的函数,并因此识别有源层的最佳厚度。我们的研究结果表明,虽然Perovskite的厚度在很大程度上影响了器件的性能,但Si厚度的效果是标称的。此外,由于两个计数器过程的增加,在具有厚度的装置中的产生率和重组速率,存在一对最佳厚度;我们阐明了同样的裁保。实际上,我们的建模方法和结果为佩罗夫斯基钛矿/ Si串联太阳能电池提供了设计空间优化的方向。

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