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Spray coating of the PCBM electron transport layer significantly improves the efficiency of p-i-n planar perovskite solar cells

机译:喷涂的PCBM电子传输层极大地提高了p i n的效率平面钙钛矿的太阳能电池

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摘要

The p-i-n structure for perovskite solar cells has recently shown significant advantages in minimal hysteresis effects, and scalable manufacturing potential using low-temperature solution processing. However, the power conversion efficiency (PCE) of the perovskite p-i-n structure remains low mainly due to limitations using a flat electron transport layer (ETL). In this work, we demonstrate a new approach using spray coating to fabricate the 6,6-phenyl-C(61)-butyric acid methyl ester (PCBM) ETL. By creating a rough surface, we effectively improve the light trapping properties inside the PCBM ETL. We reveal that the spray coated PCBM can form a cross-linked network, which may facilitate better charge transport and enhance extraction efficiency. By improving the contact between the perovskite film and the PCBM ETL, a reduction in the trap states is observed resulting in a PCE increase from 13 to 17.
机译:钙钛矿的pin结构太阳能电池最近在最小显示显著的优势磁滞效应,且可伸缩的制造业潜在的使用低温解决方案处理。钙钛矿的效率(PCE) p i n仍然较低主要是由于结构限制使用平面电子传输层(ETL)。这项工作,我们将演示使用一种新方法喷涂装配(6,6) -phenyl-C(61)丁酸甲酯ETL (PCBM)。有效改善光捕获性能在PCBM ETL。涂布PCBM可以形成交联网络,这可能会促进更好的电荷传输和提高提取效率。钙钛矿电影和PCBM之间的联系ETL、减少陷阱状态导致PCE从13%增加到在17%。

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