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Upscaling Inverted Perovskite Solar Cells: Optimization of Laser Scribing for Highly Efficient Mini-Modules

机译:升级倒钙钛矿太阳能电池:高效迷你模块的激光划线优化

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摘要

The upscaling of perovskite solar cells is one of the challenges that must be addressed to pave the way toward the commercial development of this technology. As for other thin-film photovoltaic technologies, upscaling requires the fabrication of modules composed of series-connected cells. In this work we demonstrate for the first time the interconnection of inverted modules with NiOx using a UV ns laser, obtaining a 10.2 cm2 minimodule with a 15.9% efficiency on the active area, the highest for a NiOx based perovskite module. We use optical microscopy, energy-dispersive X-ray spectroscopy, and transfer length measurement to optimize the interconnection. The results are implemented in a complete electrical simulation of the cell-to-module losses to evaluate the experimental results and to provide an outlook on further development of single junction and multijunction perovskite modules.
机译:佩罗夫斯基特太阳能电池的升级是必须解决的挑战之一,以便为这项技术的商业发展铺平道路。至于其他薄膜光伏技术,升级需要制造由串联电池组成的模块。在这项工作中,我们首次演示了使用UV NS激光与NIOx与NIOX互连的互连,在有源区域上获得10.2cm2的最小尺寸,对于基于NIOx的PeroVskite模块,最高。我们使用光学显微镜,能量分散X射线光谱,并传递长度测量以优化互连。结果在细胞到模块损耗的完全电气模拟中实现,以评估实验结果,并提供关于单结和多结钙钛矿模块的进一步发展的观点。

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