利用空间和光谱分辨吸收率研究钙钛矿和钙钛矿/硅串联太阳能电池的降解

Hieu T. Nguyen, S. Gerritsen, D. Macdonald
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引用次数: 0

摘要

不稳定性是阻碍钙钛矿太阳能电池商业化的主要挑战之一。我们简要地总结了我们最近在研究钙钛矿和钙钛矿/硅串联太阳能电池的非接触、非破坏性方法方面的进展。我们利用钙钛矿太阳能电池的光谱和空间分辨光致发光图来提取其相应的亚带隙波长的吸收率图。亚带隙吸收率反映了钙钛矿薄膜的实际降解,比其光学带隙和发光强度更健壮和敏感。吸收率图允许我们研究各种常见的因素,诱导和加速钙钛矿太阳能电池的降解,包括空气和热暴露和光浸泡。此外,我们采用该技术从钙钛矿/硅单片串联结构的钙钛矿层中提取单个吸收成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating Degradation in Perovskite and Perovskite/Silicon Tandem Solar Cells Using Spatially and Spectrally-Resolved Absorptivity
Instability is the one of the main challenges preventing the commercialization of perovskite solar cells. We briefly summarize our recent development of a contactless, nondestructive approach to study degradation across perovskite and perovskite/silicon tandem solar cells. We employ spectrally and spatially-resolved photoluminescence maps of perovskite solar cells to extract their corresponding absorptivity maps at sub-bandgap wavelengths. The sub-bandgap absorptivity reflects real degradation in the perovskite film and is much more robust and sensitive than its optical bandgap and luminescence intensity. The absorptivity maps allow us to study various common factors which induce and accelerate degradation in perovskite solar cells including air and heat exposures and light soaking. Also, we employ the technique to extract the individual absorptivity component from the perovskite layer in a monolithic perovskite/silicon tandem structure.
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