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A Highly Fluorescent cis‐Stiff‐Stilbene

机译:一种高荧光顺式-硬-二苯乙烯

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Abstract Because of the ultrafast C=C bond torsion and electrocyclic reaction in the excited state, cis‐stilbenes are generally nonfluorescent (Φf <10−4) in common solvents at ambient temperature. The known examples of highly fluorescent cis‐stilbenes are limited to those with the C=C configuration structurally locked. Herein we report a novel cis‐stiff‐stilbene c‐2 a that displays a high fluorescence quantum efficiency up to 0.47 in acetonitrile (MeCN) without sacrificing the photoisomerization ability. Through comparison with the corresponding aminostilbene c‐1 and positional isomer c‐2 b, the fluorescence turn‐on for c‐2 a takes root in two structural origins: namely, a rigid stilbene backbone that suppresses the cis→dihydrophenanthrene (DHP) photocyclization and a non‐twisted meta‐N,N‐dimethylamino (DMA) substituent that slows down the cis→trans photoisomerization. The corresponding trans isomers t‐1, t‐2 a, and t‐2 b are also investigated to gain insights into the meta‐DMA effect in stiff‐stilbene.
机译:抽象,因为超速的C = C债券扭转在激发态和electrocyclic反应,顺式芪通常应承担nonfluorescent(Φf< 10−4)共同的溶剂在环境温度。已知的高荧光的例子顺式芪仅限于那些与C = C配置结构锁。报告一个小说cis的非对称二苯代乙烯c 2量显示一个高荧光量子效率0.47在乙腈(MeCN)牺牲的光异构化能力。通过与相应的比较aminostilbene c量1和位置异构体c 2 b,的荧光打开量c量2扎根两个结构的起源:即严格的对称二苯代乙烯骨干,抑制独联体→dihydrophenanthrene photocyclization(设计马力)和一个非扭曲的元N, N量二甲胺基(DMA)取代基,减缓了cis→反式光异构化。同分异构体t高1在t高2 a和t 2 b也调查获得洞察元DMA影响硬非对称二苯代乙烯。

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