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用于高效单片钙钛矿-硅串联太阳能电池的纳米光学设计。

Nano-optical designs for high-efficiency monolithic perovskite-silicon tandem solar cells.

作者信息

Tockhorn Philipp, Sutter Johannes, Cruz Alexandros, Wagner Philipp, Jäger Klaus, Yoo Danbi, Lang Felix, Grischek Max, Li Bor, Li Jinzhao, Shargaieva Oleksandra, Unger Eva, Al-Ashouri Amran, Köhnen Eike, Stolterfoht Martin, Neher Dieter, Schlatmann Rutger, Rech Bernd, Stannowski Bernd, Albrecht Steve, Becker Christiane

机构信息

Division Solar Energy, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Berlin, Germany.

Computational Nanooptics Group, Zuse Institute Berlin, Berlin, Germany.

出版信息

Nat Nanotechnol. 2022 Nov;17(11):1214-1221. doi: 10.1038/s41565-022-01228-8. Epub 2022 Oct 24.

Abstract

Perovskite-silicon tandem solar cells offer the possibility of overcoming the power conversion efficiency limit of conventional silicon solar cells. Various textured tandem devices have been presented aiming at improved optical performance, but optimizing film growth on surface-textured wafers remains challenging. Here we present perovskite-silicon tandem solar cells with periodic nanotextures that offer various advantages without compromising the material quality of solution-processed perovskite layers. We show a reduction in reflection losses in comparison to planar tandems, with the new devices being less sensitive to deviations from optimum layer thicknesses. The nanotextures also enable a greatly increased fabrication yield from 50% to 95%. Moreover, the open-circuit voltage is improved by 15 mV due to the enhanced optoelectronic properties of the perovskite top cell. Our optically advanced rear reflector with a dielectric buffer layer results in reduced parasitic absorption at near-infrared wavelengths. As a result, we demonstrate a certified power conversion efficiency of 29.80%.

摘要

钙钛矿-硅串联太阳能电池提供了克服传统硅太阳能电池功率转换效率限制的可能性。为了提高光学性能,人们已经提出了各种具有纹理的串联器件,但在表面有纹理的晶圆上优化薄膜生长仍然具有挑战性。在这里,我们展示了具有周期性纳米纹理的钙钛矿-硅串联太阳能电池,这些纳米纹理在不影响溶液处理的钙钛矿层材料质量的情况下具有多种优势。与平面串联电池相比,我们展示了反射损耗的降低,新器件对偏离最佳层厚度的敏感度更低。纳米纹理还使制造良率从50%大幅提高到95%。此外,由于钙钛矿顶电池的光电性能增强,开路电压提高了15 mV。我们具有介电缓冲层的光学先进后反射器降低了近红外波长下的寄生吸收。结果,我们展示了29.80%的认证功率转换效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54ca/9646483/4b29ae7de5d2/41565_2022_1228_Fig1_HTML.jpg

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