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Optical optimization of double-side-textured monolithic perovskite–silicon tandem solar cells for improved light management

机译:双面纹理整体钙钛矿 - 硅串联太阳能电池的光学优化,改进轻型管理

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Tandem configuration-containing perovskite and silicon solar cells are promising candidates for realizing a high power conversion efficiency of 30% at reasonable costs. Silicon solar cells with planar front surfaces used in tandem devices cause high optical losses, which significantly affects their efficiency. Moreover, some studies have explored the fabrication of perovskites on textured silicon cells. However, due to improper texturing, light trapping is not ideal in these devices, which reduces the efficiency. In this work, we optimized the pyramid height of textured silicon cells and efficiently characterized them to achieve enhanced light trapping. Two different kinds of perovskites, namely, Cs _(0.17) FA _(0.6) Pb(Br _(0.17) I _(0.7) ) _(3) and Cs _(0.25) FA _(0.6) Pb(Br _(0.20) I _(0.7) ) _(3) with wide bandgaps were conformally deposited on textured silicon cells, and the performance of these flat and fully textured tandem devices was numerically analyzed. The thickness of each layer in the tandem cell was optimized in a way to ensure a perfect current match between the top perovskite and bottom silicon subcells. The results indicated that the textured tandem configuration enhances light absorption over a broad spectral range due to the optimized pyramid height compared to flat surfaces. Eventually, the photovoltaic parameters of the proposed tandem cell were compared with the already existing structures, and our design supports large values of open circuit voltage ( V _(oc) ) = 1.78 V, short circuit current density ( J _(sc) ) = 20.09 mA cm ~(?2) , fill factor (FF) = 79.01%, and efficiency ( η ) = 28.20% compared to other kinds of tandem solar cells.
机译:含有串联配置的钙钛矿和硅太阳能电池是有希望以合理成本实现30%的高功率转换效率的候选者。串联设备中使用的平面前表面的硅太阳能电池导致高光学损耗,这显着影响了它们的效率。此外,一些研究探索了培养型硅细胞的钙锌矿的制造。但是,由于纹理不当,光诱捕在这些设备中不太理想,这降低了效率。在这项工作中,我们优化了纹理硅电池的金字塔高度,并有效地表征了它们实现增强的光捕获。两种不同种类的蠕动,即CS _(0.17)FA _(0.6)PB(BR _(0.17)I _(0.7))_(3)和CS _(0.25)FA _(0.6)PB(BR _ (0.20)I _(0.7))_(3)在纹理硅电池上共形地沉积宽带隙,并在数值上分析了这些平坦和完全纹理的串联装置的性能。以串联电池中的每层中的每层的厚度以一种方式优化,以确保顶部Perovskite和底部硅子单元之间的完美电流匹配。结果表明,由于与平坦表面相比,由于优化的金字塔高度,纹理串联配置增强了宽光谱范围内的光吸收。最终,将所提出的串联电池的光伏参数与现有的结构进行比较,我们的设计支持大值的开路电压(V _(oc))= 1.78 V,短路电流密度(J _(SC)) = 20.09 mA cm〜(α2),填充因子(FF)= 79.01%,效率(η)= 28.20%与其他类型的串联太阳能电池相比。

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