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Improvement of Exciton Collection and Light-Harvesting Range in Ternary Blend Polymer Solar Cells Based on Two Non-Fullerene Acceptors

机译:基于两个非富勒烯受体的三元共混聚合物太阳能电池激子收集和聚光范围的改善

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摘要

A non-fullerene molecule named Y6 was incorporated into a binary blend of PBDB-T and IT-M to further enhance photon harvesting in the near-infrared (near-IR) region. Compared with PBDB-T/IT-M binary blend devices, PBDB-T/IT-M/Y6 ternary blend devices exhibited an improved short-circuit current density ( ) from 15.34 to 19.09 mA cm . As a result, the power conversion efficiency (PCE) increased from 10.65% to 12.50%. With an increasing weight ratio of Y6, the external quantum efficiency (EQE) was enhanced at around 825 nm, which is ascribed to the absorption of Y6. At the same time, EQE was also enhanced at around 600–700 nm, which is ascribed to the absorption of IT-M, although the optical absorption intensity of IT-M decreased with increasing weight ratio of Y6. This is because of the efficient energy transfer from IT-M to Y6, which can collect the IT-M exciton lost in the PBDB-T/IT-M binary blend. Interestingly, the EQE spectra of PBDB-T/IT-M/Y6 ternary blend devices were not only increased but also red-shifted in the near-IR region with increasing weight ratio of Y6. This finding suggests that the absorption spectrum of Y6 is dependent on the weight ratio of Y6, which is probably due to different aggregation states depending on the weight ratio. This aggregate property of Y6 was also studied in terms of surface energy.
机译:将名为Y6的非富勒烯分子掺入PBDB-T和IT-M的二元混合物中,以进一步增强近红外(near-IR)区域中的光子收集。与PBDB-T / IT-M二元混合器件相比,PBDB-T / IT-M / Y6三元混合器件的短路电流密度()从15.34 mA改善到19.09 mA cm。结果,功率转换效率(PCE)从10.65%提高到12.50%。随着Y6重量比的增加,外部量子效率(EQE)在825 nm附近增强,这归因于Y6的吸收。同时,EQE在600-700 nm附近也有所增强,这归因于IT-M的吸收,尽管IT-M的光吸收强度随Y6重量比的增加而降低。这是因为从IT-M到Y6的有效能量转移,可以收集PBDB-T / IT-M二元混合物中损失的IT-M激子。有趣的是,随着Y6重量比的增加,PBDB-T / IT-M / Y6三元共混器件的EQE谱不仅增加,而且在近红外区发生红移。该发现表明Y6的吸收光谱取决于Y6的重量比,这可能是由于取决于重量比的不同聚集状态所致。还根据表面能研究了Y6的这种聚集性质。

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