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Synthesis and C-H Functionalization Chemistry of Thiazole-Semicoronenediimide (TsCDIs) and -Coronenediimides (TCDIs)

机译:噻唑 - 半硅二酰亚胺(TSCDIS)和-Coroneneniidides(TCDIS)的合成和C-H官能化化学

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摘要

Coronenediimide (CDI) derivatives have a planar structure, a reasonably high electron affinity, and a rigid and extended delocalized pi-system. Therefore, this core and variants thereof may be promising building blocks for the synthesis of electron transport materials. Herein, we have synthesized thiazole-semicoronenediimides (TsCDIs) and -coronenediimides (TCDIs) by a two-step process from a perylenediimide (PDI) precursor. Conditions for C-H arylation and heteroarylation of the thiazole moiety of this core were developed and were successfully used for the synthesis of dimer, triad, and polymeric materials. The optical and electrochemical properties of these materials and their monomers were examined as a function of side chain modification and pi-extension. With their broad optical absorption and low reduction potentials, these materials could be candidates as organic semiconductors for applications in OFETs and as nonfullerene acceptors.
机译:冠军二酰亚胺(CDI)衍生物具有平面结构,合理高的电子亲和力,以及刚性和延伸的疏散性PI系统。 因此,该核心和变型可以是用于合成电子传输材料的承诺构建块。 在此,我们通过来自二酰亚胺(PDI)前体的两步法合成噻唑-半硅二酰亚胺(TSCDI酰亚胺二酰亚胺(TSCDI酰亚胺)(TCDI酰亚胺)。 开发了该核心的C-H芳基化和噻唑部分的杂芳基,并成功地用于合成二聚体,三合会和聚合物材料。 将这些材料的光学和电化学性质及其单体作为侧链改性和PI-延伸的函数。 通过宽的光学吸收和低减少电位,这些材料可以作为有机半导体作为有机半导体,用于以ofets和非替代者受体。

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