材料科学
电致发光
钙钛矿(结构)
光电子学
工程物理
纳米技术
结晶学
化学
图层(电子)
工程类
作者
Haodong Wu,Junchuan Zhang,Yi Zhang,Fangfang Cao,Zhiheng Qiu,Liping Zhang,Abdullah M. Asiri,Paul J. Dyson,Mohammad Khaja Nazeeruddin,Jichun Ye,Chuanxiao Xiao
标识
DOI:10.1021/acsami.4c03397
摘要
Spatially resolved photoluminescence (PL) and electroluminescence (EL) imaging technologies play a crucial role in evaluating the performance and stability of photovoltaic devices. However, their application in perovskite devices presents unique challenges. In this study, we report a discrepancy between the electrical performance of perovskite solar modules (PSMs) and the EL images. Following the application of a reverse bias voltage, we observed an increase in EL brightness associated with prolonged carrier lifetime and transport length. Furthermore, cross-sectional Kelvin probe force microscopy identified a significant potential increase primarily at the electron-transport layer (ETL) side after reverse bias, suggesting the presence of defective ETL/perovskite interfaces with filled hole traps. To address this EL mismatch, we proposed a mild reverse current recovery method aimed at aligning EL images with the cell performance without compromising device efficiency. This approach effectively mitigates discrepancies, ensuring alignment between the device performance and EL imaging. Our study underscores that caution is required when utilizing EL imaging to monitor spatial homogeneity in PSMs for future industrial production.
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