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Improving the Performances of Perovskite Solar Cells via Modification of Electron Transport Layer

机译:通过电子传输层的改进提高钙钛矿太阳能电池的性能

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摘要

The commonly used electron transport material (6,6)-phenyl-C61 butyric acid methyl ester (PCBM) for perovskite solar cells (PSC) with inverted planar structures suffers from properties such as poor film-forming. In this manuscript, we demonstrate a simple method to improve the film-forming properties of PCBM by doping PCBM with poly(9,9-dioctylfluorene-co-benzothiadiazole) (F8BT) as the electron transport layer (ETL), which effectively enhances the performance of CH3NH3PbI3 based solar cells. With 5 wt % F8BT in PCBM, the short circuit current (JSC) and fill factor (FF) of PSC both significantly increased from 17.21 ± 0.15 mA·cm−2 and 71.1 ± 0.07% to 19.28 ± 0.22 mA·cm−2 and 74.7 ± 0.21%, respectively, which led to a power conversion efficiency (PCE) improvement from 12.6 ± 0.24% to 15 ± 0.26%. The morphology investigation suggested that doping with F8BT facilitated the formation of a smooth and uniform ETL, which was favorable for the separation of electron-hole pairs, and therefore, an improved performance of PSC.
机译:具有平面结构倒置的钙钛矿太阳能电池(PSC)常用的电子传输材料(6,6)-苯基-C61丁酸甲酯(PCBM)具有诸如成膜性差的特性。在本手稿中,我们演示了一种简单的方法,通过在PCBM中掺入聚(9,9-二辛基芴-co-苯并噻二唑)(F8BT)作为电子传输层(ETL)来改善PCBM的成膜性能,该方法可以有效地增强CH3NH3PbI3基太阳能电池的性能。在PCBM中使用5 wt%F8BT时,PSC的短路电流(JSC)和填充因子(FF)均从17.21±0.15 mA·cm -2 和71.1±0.07%显着增加至19.28±分别为0.22 mA·cm −2 和74.7±0.21%,这导致功率转换效率(PCE)从12.6±0.24%提高到15±0.26%。形态学研究表明,用F8BT掺杂有助于形成光滑均匀的ETL,这有利于电子-空穴对的分离,因此改善了PSC的性能。

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