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Self‐Organized Fullerene Interfacial Layer for Efficient and Low‐Temperature Processed Planar Perovskite Solar Cells with High UV‐Light Stability

机译:自组织富勒烯界面层用于高效低温处理的具有高紫外光稳定性的平面钙钛矿太阳能电池

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摘要

In this Communication, a self‐organization method of [6,6]‐phenyl‐C61‐butyric acid 2‐((2‐(dimethylamino)‐ethyl) (methyl)amino)ethyl ester (PCBDAN) interlayer in between 6,6‐phenyl C61‐butyric acid methyl ester (PCBM) and indium tin oxide (ITO) has been proposed to improve the performance of N–I–P perovskite solar cells (PSCs). The introduction of self‐organized PCBDAN interlayer can effectively reduce the work function of ITO and therefore eliminate the interface barrier between electron transport layer and electrode. It is beneficial for enhancing the charge extraction and decreasing the recombination loss at the interface. By employing this strategy, a highest power conversion efficiency of 18.1% has been obtained with almost free hysteresis. Furthermore, the N–I–P PSCs have excellent stability under UV‐light soaking, which can maintain 85% of its original highest value after 240 h accelerated UV aging. This self‐organization method for the formation of interlayer can not only simplify the fabrication process of low‐cost PSCs, but also be compatible with the roll‐to‐roll device processing on flexible substrates.
机译:在本交流中,一种自组织方法是在6,6之间插入[6,6]-苯基-C61-丁酸2-((2-(二甲基氨基)-乙基)(甲基)氨基)乙酯(PCBDAN)中间层有人建议使用苯基C61丁酸甲酯(PCBM)和氧化铟锡(ITO)来改善N–I–P钙钛矿太阳能电池(PSC)的性能。自组织PCBDAN中间层的引入可有效降低ITO的功函数,从而消除电子传输层与电极之间的界面障碍。有利于增强电荷提取并减少界面处的重组损失。通过采用这种策略,在几乎没有磁滞的情况下获得了18.1%的最高功率转换效率。此外,N–I–P PSC在紫外线浸泡下具有出色的稳定性,在加速紫外线老化240小时后,可以保持其原始最高值的85%。这种用于形成中间层的自组织方法不仅可以简化低成本PSC的制造过程,而且可以与在柔性基板上的卷对卷设备处理兼容。

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