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Single-Component Organic Solar Cells Based on Intramolecular Charge Transfer Photoabsorption

机译:基于分子内电荷转移光吸收的单组分有机太阳能电池

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摘要

Conjugated donor–acceptor molecules with intramolecular charge transfer absorption are employed for single-component organic solar cells. Among the five types of donor–acceptor molecules, the strong push–pull structure of DTDCPB resulted in solar cells with high JSC, an internal quantum efficiency exceeding 20%, and high VOC exceeding 1 V with little photon energy loss around 0.7 eV. The exciton binding energy (EBE), which is a key factor in enhancing the photocurrent in the single-component device, was determined by quantum chemical calculation. The relationship between the photoexcited state and the device performance suggests that the strong internal charge transfer is effective for reducing the EBE. Furthermore, molecular packing in the film is shown to influence photogeneration in the film bulk.
机译:具有分子内电荷转移吸收的共轭供体 - 受体分子用于单组分有机太阳能电池。在五种类型的供体受体分子中,DTDCPB的强推挽式结构导致具有高JSC的太阳能电池,内部量子效率超过20%,高VOC超过1V,光子能量损失大约0.7eV。通过量子化学计算确定了作为增强单组分装置中的光电流的关键因素的激子结合能量(EBE)。相错状态与器件性能之间的关系表明强大的内部电荷转移对于减少EBE有效。此外,薄膜中的分子包装被示出为影响薄膜体积的荧光。

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