论文标题

高纹理的钙钛矿太阳能电池中的光管理:从全部椭圆法表征到光学建模,以进行量子效率优化

Light management in highly-textured perovskite solar cells: From full-device ellipsometry characterization to optical modelling for quantum efficiency optimization

论文作者

Ma, Chenxi, Zheng, Daming, Demaille, Dominique, Gallas, Bruno, Schwob, Catherine, Pauporté, Thierry, Coolen, Laurent

论文摘要

虽然钙钛矿太阳能电池(PSC)现在达到高功率转化效率(PCE),但进一步的性能提高需要良好的管理并优化光途径并在电池中收获。这些经历了对这些复杂的,经常纹理的多层系统中发生的光学过程的准确理解,表征和建模。在目前的工作中,我们考虑了建立在高粗糙度(43 nm rms)的氟掺杂的氧化锡(FTO)电极上的典型碘化碘化物(MAPI)太阳能电池。通过完整PSC设备的可变角度光谱椭圆法(花瓶),我们能够确定所有设备层的光学常数。我们已经设计了一个堆叠层的一维光学模型,其中粗纹理被描述为有效中等指数的层。我们使用从扫描电子显微镜,漫射光谱和光伏效率测量中提取的数据支持了该模型。我们表明,1D模型虽然不足以描述单独使用FTO板的散射,但可以准确描述完整的设备光学特性。通过与实验性外部量子效率(EQE)相比,我们估计内部量子效率(IQE)以及与电子转移相关的损失的影响。基于这项工作,我们最终讨论了光损失机制以及可以实现改善PSC设备中光管理并进一步提高其性能的可能策略。

While perovskite solar cells (PSCs) are now reaching high power conversion efficiencies (PCEs), further performance improvement requires a fine management and an optimization of the light pathway and harvesting in the cells. These go through an accurate understanding, characterization and modelling of the optical processes occurring in these complex, often textured, multi-layered systems. In the present work, we have considered a typical methylammonium lead iodide (MAPI) solar cell built on a fluorine-doped tin oxide (FTO) electrode of high roughness (43 nm RMS). By variable-angle spectroscopic ellipsometry (VASE) of the full PSC device, we have been able to determine the optical constants of all the device layers. We have designed a one-dimensional (1D) optical model of the stacked layers where the rough texture is described as layers of effective-medium index. We have supported the model using data extracted from scanning electron microscopy, diffuse spectroscopy and photovoltaic efficiency measurements. We show that the 1D model, while insufficient to describe scattering by the FTO plate alone, gives an accurate description of the full device optical properties. By comparison with the experimental external quantum efficiency (EQE), we estimate the internal quantum efficiency (IQE) and the effect of the losses related to electron transfer. Based on this work, we finally discuss the optical losses mechanisms and the possible strategies that can be implemented to improve light management within PSC devices and further increase their performances.

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