基于平面和纹理硅的高效钙钛矿-硅串联太阳能电池

Christian M. Wolff, X. Chin, Deniz Turkay, Kerem Artuk, Mohammad Reza Golobostanfard, Florent Sahli, Daniel A. Jacobs, Quentin Guesnay, Peter Fiala, M. Othman, B. Sharma, Brett A. Kamino, A. Hessler-Wyser, M. Boccard, Q. Jeangros, C. Ballif
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引用次数: 0

摘要

超越单结太阳能电池的局限性,多结装置提供了更有效地利用太阳光的可能性。特别是硅上钙钛矿(Pk/Si)串联在保持低成本的同时具有高达30%的高效率。我们报告了我们在Pk/Si串联开发方面的最新进展,比较了我们在单面和双面纹理Pk/Si串联上的努力,在1cm2的有效面积上,VOC高达1.95 V,总短路电流密度超过41 mA/cm2,认证效率> 29%。我们通过对堆栈内所有层进行专门的电气和光学优化来实现这些结果。具体来说,我们通过模拟引导优化前栅格和层厚度,提高了前堆叠电极和触点的透明度,并通过工艺和增材工程,减少了溶液处理一步和混合两步沉积Pks中Pk吸收剂的重组和输运损失。此外,我们还研究了单结Pk和串联器件在反向偏置和标准化加速老化条件下的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly Efficient Perovskite-on-Silicon Tandem Solar Cells on Planar and Textured Silicon
Beyond the limitations of single-junction solar cells, multi-junction devices offer the possibility to harness the sun’ light more efficiently. In particular perovskite-on-silicon (Pk/Si) tandems hold the great promise of high efficiencies >30 % while maintaining low cost. We report on our latest progress in the development of Pk/Si tandems comparing our efforts on single-side and double-side textured Pk/Si tandems, reaching a VOC up to 1.95 V, summed short-circuit current densities above 41 mA/cm2, and certified efficiencies >29 %, on an active area of 1cm2. We achieved these results by dedicated electrical and optical optimizations of all layers within the stack. Specifically, we improved the transparency of the front stack electrodes and contacts through simulation-guided optimizations of the front grid and layer thicknesses, and reduced recombination and transport losses in the Pk absorbers through process and additive engineering for both solution-processed one-step and hybrid two-step deposited Pks. Furthermore, we investigated the stability of single-junction Pk and tandem devices under reverse-bias and standardized accelerated aging conditions.
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