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Pyrene-Imidazole Based Aggregation Modifier Leads to Enhancement in Efficiency and Environmental Stability for Ternary Organic Solar Cells

机译:-咪唑基聚集改性剂可提高三元有机太阳能电池的效率和环境稳定性

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摘要

A novel pyrene-imidazole derivative (PyPI), which can form effcient π-π stacking in solid film, has been utilized in organic solar cells (OSCs). The stacking of small a molecule PyPI can facilitate a charge transfer and suppress fullerene aggregation. As a result, PTB7-Th: PyPI: PC71BM based ternary OSC exhibits a high power conversion efficiency (PCE) of 10.36%, which presents a 15.88% increase from the binary device (8.94%). Concurrently, the ternary OSC shows a much better thermal and light illumination stability. Under continuous 60°C annealing for 3 h, in atmosphere, the device still remains at 94.13% efficiency more than the pristine state, while the control device remains at 52.47% PCE. Constant illumination under Air Mass (AM) 1.5G irradiation (100 mW cm−2) in atmosphere, the PCE of OSC remains at 72.50%. The high conversion efficiency and excellent environmental stability of the PyPI based ternary OSC, has narrowed the gap between laboratory investigation and industrial production.
机译:可以在固体膜中形成有效的π-π堆积的新型pyr-咪唑衍生物(PyPI)已用于有机太阳能电池(OSC)中。小分子PyPI的堆积可以促进电荷转移并抑制富勒烯聚集。结果,基于PTB7-Th:PyPI:PC71BM的三元OSC表现出10.36%的高功率转换效率(PCE),与二进制器件(8.94%)相比增加了15.88%。同时,三元OSC显示出更好的热和光照明稳定性。在大气中连续60°C退火3小时后,该器件的效率仍比原始状态高94.13%,而控制器件的PCE保持52.47%。在空气质量(AM)1.5G辐照下(100 mW cm -2 )在大气中持续照射,OSC的PCE保持在72.50%。基于PyPI的三元OSC的高转化效率和出色的环境稳定性,缩小了实验室研究与工业生产之间的差距。

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