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Self-Assembly and Aggregate-Induced Enhanced Emission of Amphiphilic Fluorescence Dyes in Water and in the Solid State

机译:自组装和聚集诱导的两亲性荧光染料在水中和固态中的增强发射

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摘要

1-Cyano-1,2-bis(biphenyl)-ethene (CNBE) derivatives with a hexa(ethylene glycol) group as an amphiphilic side chain were synthesized and the self-assembling character and fluorescence behavior were investigated. The amphiphilic derivatives showed aggregate-induced enhanced emission (AIEE) in water and in the solid state. The fluorescence quantum yield increased as the rigidity of the aggregates increased (i.e., in ethyl acetate < in water < in the solid state). As determined from measurements of fluorescence spectra, fluorescence quantum yields, and fluorescence lifetimes, a key factor for the enhanced emission is suppression of the nonradiative decay process arising from restricted molecular motion. Additionally, the difference in the emission rate constant is not negligible and can be used to interpret the difference in fluorescence quantum yield in water and in the solid state.
机译:合成了以六(乙二醇)为两亲性侧链的1-氰基1,2-双(联苯)-乙烯(CNBE)衍生物,研究了其自组装特性和荧光行为。两亲衍生物在水中和固态下均显示出聚集体诱导的增强发射(AIEE)。荧光量子产率随着聚集体刚性的增加而增加(即,在乙酸乙酯中<在水中<在固态中)。从荧光光谱,荧光量子产率和荧光寿命的测量结果确定,增强发射的关键因素是抑制分子运动受限引起的非辐射衰变过程。此外,发射速率常数的差异不可忽略,可用于解释水和固态荧光量子产率的差异。

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