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Synthesis and Optoelectronic Characterization of Perylene Diimide-Quinoline Based Small Molecules

机译:ylene二酰亚胺-喹啉基小分子的合成及光电性质

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Perylene diimide (PDI) is one of the most studied functional dyes due to their structural versatility and fine tuning of the materials properties. Core substituted PDIs are prominent n-type semiconductor materials that could be used as non-fullerene acceptors in organic photovoltaics. Herein, we develop versatile organic building blocks based on PDI by decorating the PDI core with quinoline groups. Styryl and hydroxy phenyl mono and difunctionalized molecules were prepared using mono-nitro and dibromo bay substituted PDIs by Suzuki coupling with the respective boronic acid derivatives. A novel methodology using nitro-PDI under Suzuki coupling conditions as an electrophile partner was successfully tested. Furthermore, the PDI derivatives were used for the synthesis of soluble, electron accepting small molecules combining PDI with weak electron withdrawing quinoline derivatives. The new molecules presented wide absorbance in the visible spectrum from 450 to almost 700 nm while their LUMO levels and their energy levels are in the range of ?3.8 to ?4.2 eV.
机译:ylene二酰亚胺(PDI)由于其结构的多功能性和材料性能的微调而成为研究最多的功能染料之一。核心取代的PDI是重要的n型半导体材料,可以用作有机光伏中的非富勒烯受体。本文中,我们通过用喹啉基团装饰PDI核心,开发了基于PDI的通用有机构建基块。苯乙烯基和羟基苯基的单官能团和双官能团分子是通过单硝基和二溴海湾取代的PDI通过Suzuki与相应的硼酸衍生物偶联制备的。在铃木偶合条件下使用硝基PDI作为亲电子试剂的新型方法已成功测试。此外,PDI衍生物还用于合成可溶的,受电子的小分子,将PDI与弱吸电子的喹啉衍生物结合在一起。这些新分子在450至近700 nm的可见光谱范围内表现出宽吸收性,而它们的LUMO能级和能级则在3.8至4.2 eV的范围内。

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