首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A simple perylene diimide derivative with a highly twisted geometry as an electron acceptor for efficient organic solar cells
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A simple perylene diimide derivative with a highly twisted geometry as an electron acceptor for efficient organic solar cells

机译:具有高扭曲几何形状的简单per二酰亚胺衍生物,可作为高效有机太阳能电池的电子受体

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摘要

Perylene diimide (PDI), which features intense absorption, a low-lying energy level, and high electron mobility, is a promising building block for electron acceptors in organic solar cells (OSCs). However, this planar molecule has a strong tendency to form large aggregates during film formation which strongly limits its OSC performance. Herein, we report a new and simple PDI derivative, B(PDI)(3), in which a central benzene unit is employed to connect three PDI arms. This compact arrangement of sterically bulky PDI moieties leads to a twisted molecular geometry of the resultant structure. This suppresses the strong crystallization tendency of PDI chromophores, owing to the broken molecular coplanarity and symmetry. Therefore, B(PDI) 3 is applied as a non-fullerene acceptor in OSCs, providing a good power conversion efficiency of 5.65% when blended with the PTB7-Th donor.
机译:intense二酰亚胺(PDI)具有吸收强,能量低,电子迁移率高的特点,是有机太阳能电池(OSC)中电子受体的有前途的构建基块。然而,该平面分子在成膜过程中具有形成大聚集体的强烈趋势,这严重限制了其OSC性能。在此,我们报告了一种新的简单的PDI衍生物B(PDI)(3),其中使用了一个中心苯单元来连接三个PDI臂。空间上庞大的PDI部分的这种紧凑排列会导致所得结构的分子几何结构发生扭曲。由于分子共面性和对称性的破坏,这抑制了PDI发色团的强烈结晶趋势。因此,B(PDI)3在OSC中用作非富勒烯受体,当与PTB7-Th供体混合时,可提供5.65%的良好功率转换效率。

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