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A divergent route to core- and peripherally functionalized diazacoronenes that act as colorimetric and fluorescence proton sensors

机译:用作核心比色和荧光质子传感器的核心和外围功能重氮唑酮的发散途径

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摘要

Combining core annulation and peripheral group modification, we have demonstrated a divergent synthesis of a family of highly functionalized coronene derivatives from a readily accessible dichlorodiazaperylene intermediate. Various reactions, such as aromatic nucleophilic substitution, Kumada coupling and Suzuki coupling proceed effectively on α-positions of the pyridine sites, giving rise to alkoxy, thioalkyl, alkyl or aryl substituted polycyclic aromatic hydrocarbons. In addition to peripheral group modulation, the aromatic core structures can be altered by annulation with thiophene or benzene ring systems. Corresponding single crystal X-ray diffraction and optical studies indicate that the heteroatom linkages not only impact the solid state packing, but also significantly influence the optoelectronic properties. Moreover, these azacoronene derivatives display significant acid-induced spectroscopic changes, suggesting their great potential as colorimetric and fluorescence proton sensors.
机译:结合核心成环和外围基团修饰,我们已经证明了从容易获得的二氯二氮杂戊烯中间体中高官能化的并苯衍生物家族的多样化合成。诸如芳族亲核取代,Kumada偶联和Suzuki偶联等各种反应可在吡啶位点的α位上有效地进行,从而生成烷氧基,硫代烷基,烷基或芳基取代的多环芳族烃。除外围基团调节外,还可通过噻吩或苯环系统的环化来改变芳族核心结构。相应的单晶X射线衍射和光学研究表明,杂原子键不仅影响固态堆积,而且显着影响光电性能。而且,这些氮杂氮杂烯衍生物显示出显着的酸诱导的光谱变化,表明它们具有作为比色和荧光质子传感器的巨大潜力。

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