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Protein-like Enwrapped Perylene Bisimide Chromophore as a Bright Microcrystalline Emitter Material

机译:蛋白质样包装的珀丙哒胺发色团作为明亮的微晶发射器材料

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摘要

Strongly emissive solid-state materials are mandatory components for many emerging optoelectronic technologies, but fluorescence is often quenched in the solid state owing to strong intermolecular interactions. The design of new organic pigments, which retain their optical properties despite their high tendency to crystallize, could overcome such limitations. Herein, we show a new material with monomer-like absorption and emission profiles as well as fluorescence quantum yields over 90 % in its crystalline solid state. The material was synthesized by attaching two bulky tris(4-tert-butylphenyl)phenoxy substituents at the perylene bisimide bay positions. These substituents direct a packing arrangement with full enwrapping of the chromophore and unidirectional chromophore alignment within the crystal lattice to afford optical properties that resemble those of their natural pigment counterparts, in which chromophores are rigidly embedded in protein environments.
机译:对于许多新出现的光电技术,强发光固态材料是强制性组件,但由于强的分子间相互作用,荧光通常在固态中淬灭。 尽管它们倾向于结晶趋势,但是新的有机颜料的设计能够克服这些限制。 在此,我们展示了一种具有单体状吸收和排放曲线的新材料以及其结晶固态的荧光量子超过90%。 通过在Pernene Bisimide湾位置附着两个笨重的三(4-叔丁基苯基)苯氧基代基代基取代基来合成材料。 这些取代基引导填充装置,该填充装置具有完全包裹的发色团和单向发色团对齐,在晶格内,以提供类似于它们的天然颜料对应物的光学性质,其中发色团刚性地嵌入蛋白质环境中。

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