首页> 外文期刊>ECS Journal of Solid State Science and Technology >Thermal Precursor Approach to Pristine Fullerene Film as Electron Selective Layer in Perovskite Solar Cells
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Thermal Precursor Approach to Pristine Fullerene Film as Electron Selective Layer in Perovskite Solar Cells

机译:热前体在钙钛矿太阳能电池中作为电子选择层的原始富勒烯薄膜的方法

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摘要

In perovskite solar cells (PSCs), electron selective layers (ESLs) assume a crucial role in blocking holes and transporting electrons for high performances. To achieve low-temperature solution processing of PSCs, organic n-type materials such as fullerene-based molecules have recently been employed to replace a typical TiO2 ESL that requires high temperature (>450 degrees C) for fabrication. Herein, soluble C-60-9-methylanthracene mono-adduct (C-60(9MA)) is used as a thermal precursor to the C-60 ESL in planar PSCs. The best performing PSC device shows a power conversion efficiency of 15.0% under the simulated AM 1.5G one sun illumination, which is superior to that of the device with compact TiO2 as an ESL (12.9%). Remarkably, a fill factor of the C-60-based PSC (0.723) is enhanced compared to that of the TiO2-based one (0.671) owing to the low charge-transfer resistance at the interface of C-60-perovskite. These results suggest that the thermal precursor approach to pristine fullerene films is a promising approach for fabricating ESL in high-performance PSCs with relatively low fabrication temperature (<140 degrees C). (C) The Author(s) 2017. Published by ECS.
机译:在Perovskite太阳能电池(PSC)中,电子选择层(ESLS)在阻塞孔和运输电子中呈现至高的性能的至关重要作用。为了实现PSC的低温溶液处理,最近已经采用了诸如富勒烯的分子的有机N型材料以替代需要高温(> 450℃)的典型TiO2 ESL来制造。这里,可溶性C-60-9-甲基蒽单 - 加合物(C-60(9mA))用作平面PSC中的C-60 ESL的热前体。最佳性能的PSC器件显示在模拟的AM 1.5g一个太阳照明下的15.0%的功率转换效率,其优于具有紧凑的TiO2作为ESL(12.9%)的装置。值得注意的是,由于C-60-Perovskite的界面处,与基于TiO 2的一个(0.671)的基于TiO 2的一个(0.671)相比,增强了C-60的PSC(0.723)的填充因子。这些结果表明,原始富勒烯薄膜的热前体方法是制造具有相对较低的制造温度(<140℃)的高性能PSC中的ESL的有希望的方法。 (c)2017年提交人。由ECS发布。

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