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Room-temperature, solution-processable organic electron extraction layer for high-performance planar heterojunction perovskite solar cells

机译:室温,solution-processable有机高性能电子萃取层平面异质结钙钛矿太阳能电池

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In this work, we describe a room-temperature, solution-processable organic electron extraction layer (EEL) for high-performance planar heterojunction perovskite solar cells (PHJ PVSCs). This EEL is composed of a bilayered fulleropyrrolidinium iodide (FPI)-polyethyleneimine (PEIE) and PC61BM, which yields a promising power conversion efficiency (PCE) of 15.7% with insignificant hysteresis. We reveal that PC61BM can serve as a surface modifier of FPI-PEIE to simultaneously facilitate the crystallization of perovskite and the charge extraction at FPI-PEIE/CH3NH3PbI3 interface. Furthermore, the FPI-PEIE can also tune the work function of ITO and dope PC61BM to promote the efficient electron transport between ITO and PC61BM. Based on the advantages of room-temperature processability and decent electrical property of FPI-PEIE/PC61BM EEL, a high-performance flexible PVSC with a PCE similar to 10% is eventually demonstrated. This study shows the potential of low-temperature processed organic EEL to replace transition metal oxide-based interlayers for highly printing compatible PVSCs with high-performance.
机译:在这项工作中,我们描述了一个室温,solution-processable有机电子提取为高性能的平面层(鳗鱼)异质结太阳能电池钙钛矿(PHJPVSCs)。fulleropyrrolidinium碘化(FPI)聚乙烯亚胺(PEIE)和PC61BM,产生一个有前途的功率转换效率与微不足道的滞后(PCE)的15.7%。显示,PC61BM可以作为一个表面FPI-PEIE同时促进的修饰符钙钛矿的结晶,这一指控提取FPI-PEIE / CH3NH3PbI3接口。此外,FPI-PEIE还可以调优工作伊藤和涂料PC61BM促进功能高效的ITO和之间的电子传递PC61BM。室温加工性能以及良好的FPI-PEIE / PC61BM鳗鱼的电性质高性能柔性PVSC PCE相似最终证明了10%。显示了潜在的低温处理有机鳗鱼取代过渡金属氧化物夹层对高印刷与高性能PVSCs兼容。

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