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High Power UV-Light Irradiation as a New Method for Defect Passivation in Degraded Perovskite Solar Cells to Recover and Enhance the Performance

机译:高功率紫外线照射作为降解钙钛矿太阳能电池中缺陷钝化的新方法以恢复并提高性能

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摘要

Although the power conversion efficiency (PCE) of perovskite solar cells (PSCs) reached up to 23%, their short lifetime and fast degradation still remain as the main challenges. In this work, a new facile optical method based on the high power UV-irradiation is presented for the recovery of the degraded PSCs. Addition to the full recovery of the performance, about 20% PCE enhancement and hystersis reduction are also achieved by UV-irradiation. UV-treatment causes modifications in both the bulk properties of the perovskite layer and the energy equilibrium at the interfaces. It is shown that UV-treatment effectively passivates the surface and grain boundaries defects in different types of the devices comprising normal and inverted configurations that is confirmed by the reduction of the density of defect states (DOS). It is proposed that UV-light passivates the shallow and deep defects by dissociation of adsorbed hydroxyl groups and water molecules during the device storage.
机译:尽管钙钛矿太阳能电池(PSC)的功率转换效率(PCE)高达23%,但它们的短寿命和快速降解仍然是主要挑战。在这项工作中,提出了一种基于高功率紫外线辐射的新的简便光学方法,用于回收降解的PSC。除了完全恢复性能外,通过紫外线照射还可以实现约20%的PCE增强和滞后降低。紫外线处理会同时改变钙钛矿层的整体性质和界面处的能量平衡。结果表明,紫外线处理可有效钝化包括正态和反型构型在内的不同类型器件的表面和晶界缺陷,这可通过降低缺陷态密度(DOS)来确认。提出在装置存储期间,紫外线通过使吸附的羟基和水分子解离而钝化浅和深的缺陷。

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