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Indolo[3,2-b]indole-based crystalline hole-transporting material for highly efficient perovskite solar cells

机译:用于高效钙钛矿太阳能电池的基于Indolo [3,2-b]吲哚的晶体空穴传输材料

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摘要

We have designed and synthesized fluorinated indolo[3,2-b]indole (IDID) derivatives as crystalline hole-transporting materials (HTM) for perovskite solar cells. The fluorinated IDID backbone enables a tight molecular arrangement stacked by strong π–π interactions, leading to a higher hole mobility than that of the current HTM standard, p,p-spiro-OMeTAD, with a spherical shape and amorphous morphology. Moreover, the photoluminescence quenching in a perovskite/HTM film is more effective at the interface of the perovskite with IDIDF as compared to that of p,p-spiro-OMeTAD. As a consequence, the device fabricated using IDIDF shows superior photovoltaic properties compared to that using p,p-spiro-OMeTAD, exhibiting an optimal performance of 19%. Thus, this remarkable result demonstrates IDID core-based materials as a new class of HTMs for highly efficient perovskite solar cells.
机译:我们已经设计并合成了氟化吲哚[3,2-b]吲哚(IDID)衍生物,作为钙钛矿型太阳能电池的晶体空穴传输材料(HTM)。氟化的IDID主链能够通过紧密的π-π相互作用堆叠紧密的分子,从而使空穴迁移率比当前的HTM标准p,p-spiro-OMeTAD更高,具有球形和无定形形态。此外,与p,p-spiro-OMeTAD相比,钙钛矿/ HTM膜中的光致发光猝灭在钙钛矿与IDIDF的界面处更为有效。因此,与使用p,p-spiro-OMeTAD相比,使用IDIDF制造的设备显示出优异的光伏性能,表现出19%的最佳性能。因此,这一非凡的结果证明了IDID核基材料是用于高效钙钛矿太阳能电池的新型HTM。

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