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Efficient and thermally stable organic solar cells based on small molecule donor and polymer acceptor

机译:基于小分子供体和聚合物受体的高效和热稳定的有机太阳能电池

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Efficient organic solar cells (OSCs) often use combination of polymer donor and small molecule acceptor. Herein we demonstrate efficient and thermally stable OSCs with combination of small molecule donor and polymer acceptor, which is expected to expand the research field of OSCs. Typical small molecule donors show strong intermolecular interactions and high crystallinity, and consequently do not match polymer acceptors because of large-size phase separation. We develop a small molecule donor with suppressed π-π stacking between molecular backbones by introducing large steric hindrance. As the result, the OSC exhibits small-size phase separation in the active layer and shows a power conversion efficiency of 8.0%. Moreover, this OSC exhibits much improved thermal stability, i.e. maintaining 89% of its initial efficiency after thermal annealing the active layer at 180?°C for 7 days. These results indicate a different kind of efficient and stable OSCs.
机译:高效的有机太阳能电池(OSC)通常使用聚合物供体和小分子受体的组合。在此,我们用小分子供体和聚合物受体的组合证明了有效和热稳定的OSC,这预计将扩大OSC的研究领域。典型的小分子供体显示出强的分子间相互作用和高结晶度,因此由于大尺寸的相分离而不匹配聚合物受体。通过引入大型空间障碍,我们在分子骨干之间抑制π-π的小分子供体。结果,OSC在有源层中表现出小尺寸的相分离,并显示出8.0%的功率转换效率。此外,该OSC表现出大大提高的热稳定性,即在将活性层在180℃下热退火7天后保持其初始效率的89%。这些结果表明了一种不同类型的有效和稳定的OSC。

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