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Synthesis and Properties of Ladder-Type BN-Heteroacenes and Diazabenzoindoles Built on a Pyrrolopyrrole Scaffold

机译:吡咯并吡咯支架构建的梯型BN-杂并苯并二氮杂苯并吲哚的合成及性能

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摘要

A simple, three-step synthesis of BN-heteroacenes and diazabenzoindoles based on the pyrrole[3,2-b]pyrrole scaffold has been developed. The incorporation of BN units has proven to be effective in modulating the electronic properties and molecular geometries of the pi-conjugated backbone, creating a new type of heteroarenes. The unique planar structure and high rigidity of BN-compounds result in very high absorption coefficients and high fluorescence quantum yields, and, at the same time, very small Stokes shifts. A striking difference has been observed for a second type of derivatives: diazabenzoindoles, which remain virtually nonfluorescent, despite having a similar, rigid structure. The former class of heterocycles is characterized by a strong absorption around 400 nm and intense fluorescence observed in the 395-426 nm region, which results in very small Stokes shifts of less than 900 cm(-1).
机译:已经开发了基于吡咯[3,2-b]吡咯支架的BN-异丁烯和二氮杂苯并吲哚的简单,三步合成方法。已经证明,掺入BN单元可以有效地调节π共轭骨架的电子性质和分子几何结构,从而产生一种新型的杂芳烃。 BN化合物的独特平面结构和高刚性导致了很高的吸收系数和很高的荧光量子产率,同时,斯托克斯位移很小。对于第二种衍生物:二氮杂苯并吲哚,尽管具有相似的刚性结构,实际上仍然不发荧光,但观察到了显着差异。前一类杂环的特征是在400 nm处有很强的吸收作用,并且在395-426 nm区域观察到强烈的荧光,这导致小于900 cm(-1)的非常小的斯托克斯位移。

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