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Imaging Spatial Variations of Optical Bandgaps in Perovskite Solar Cells

机译:PEROVSKITE太阳能电池中光带隙的成像空间变型

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摘要

A fast, nondestructive, camera-based method to capture optical bandgap images of perovskite solar cells (PSCs) with micrometer-scale spatial resolution is developed. This imaging technique utilizes well-defined and relatively symmetrical band-to-band luminescence spectra emitted from perovskite materials, whose spectral peak locations coincide with absorption thresholds and thus represent their optical bandgaps. The technique is employed to capture relative variations in optical bandgaps across various PSCs, and to resolve optical bandgap inhomogeneity within the same device due to material degradation and impurities. Degradation and impurities are found to both cause optical bandgap shifts inside the materials. The results are confirmed with micro-photoluminescence spectroscopy scans. The excellent agreement between the two techniques opens opportunities for this imaging concept to become a quantified, high spatial resolution, large-area characterization tool of PSCs. This development continues to strengthen the high value of luminescence imaging for the research and development of this photovoltaic technology.
机译:开发了一种快速,非破坏性,相机的基于相机的方法,用于捕获具有微米级空间分辨率的Perovskite太阳能电池(PSC)的光学带隙图像。该成像技术利用从钙钛矿材料发射的良好定义的和相对对称的带对带发光光谱,其光谱峰位置与吸收阈值一致,因此表示它们的光学带隙。该技术用于捕获各种PSC的光带隙的相对变化,并由于材料劣化和杂质来解析相同装置内的光学带隙的不均匀性。发现降解和杂质两者都是引起光学带隙在材料内部移动。通过微光致发光光谱扫描证实结果。两种技术之间的良好一致性达成了这种成像概念的机会,成为定量,高空间分辨率,PSC的大面积特征工具。这种发展继续加强发光成像对该光伏技术的研发成像的高价值。

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