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Fullerene Derivative-Modified SnO2 Electron Transport Layer for Highly Efficient Perovskite Solar Cells with Efficiency over 21%

机译:富勒烯衍生改性的SnO2电子传输层,用于高效的钙钛矿太阳能电池,效率超过21%

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摘要

Tin dioxide (SnO2) has been widely applied as an electron transport layer (ETL) for the n-i-p-type perovskite solar cells (Pero-SCs). However, the existence of defects at the surface of SnO2 and the hysteresis behavior of the devices with SnO2 ETL limit its application in the Pero-SCs. In this study, a fullerene derivative pyrrolidinofullerene C-60-substituted phenol (NPC60-OH) was synthesized and applied to modify the SnO2 ETL in Pero-SCs for the first time. The systematic and comparative characterizations demonstrated that, after the introduction of an NPC60-OH modification layer on the SnO2 ETL, the perovskite films in the corresponding device showed enlarged grain size and these devices presented enhanced electron transport and decreased charge recombination velocity. Besides, the NPC60-OH layer could significantly reduce the trap-state density in the perovskite film. As a result, a champion power conversion efficiency (PCE) of 21.39% was achieved for the SnO2/NPC60-OH-based Pero-SCs, with suppressed hysteresis and improved stability, while the control devices with pristine SnO2 ETL showed a lower PCE of 19.04%.
机译:二氧化锡(SnO2)被广泛应用为N-I-P型钙钛矿太阳能电池(Pero-SCs)的电子传输层(ETL)。然而,具有SnO2表面的表面的缺陷和具有SnO2 ETL的器件的滞后行为限制其在PERO-SC中的应用。在该研究中,合成了富勒烯衍生物吡咯烷酰氨酸烯C-60-取代的苯酚(NPC60-OH)并施用首次改变Pero-SC中的SnO 2 EtL。系统和比较表征证明,在SnO2 ETL上引入NPC60-OH改性层之后,相应装置中的钙钛矿膜显示出大小的晶粒尺寸,并且这些器件呈现增强的电子传输和降低的电荷重组速度。此外,NPC60-OH层可以显着降低钙钛矿薄膜中的陷阱状态密度。结果,对基于SnO2 / NPC60-OH的PERO-SCS实现了21.39%的冠军电力转换效率(PCE),抑制滞后和改善的稳定性,而具有原始SNO2 ETL的控制装置显示出较低的PCE 19.04%。

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