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Photoswitchable Fluorescent Diarylethene Derivatives with Thiophene 11-Dioxide Groups: Effect of Alkyl Substituents at the Reactive Carbons

机译:具有噻吩11-二氧化物基团的光开关荧光二芳基乙烯衍生物:活性碳上烷基取代基的影响

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摘要

Photoswitching and fluorescent properties of sulfone derivatives of 1,2-bis(2-alkyl-4-methyl-5-phenyl-3-thienyl)perfluorocyclopentene, >1–>5, having methyl, ethyl, n-propyl, i-propyl, and i-butyl substituents at the reactive carbons (2- and 2′-positions) of the thiophene 1,1-dioxide rings were studied. Diarylethenes >1–>5 underwent isomerization reactions between open-ring and closed-ring forms upon alternate irradiation with ultraviolet (UV) and visible light and showed fluorescence in the closed-ring forms. The alkyl substitution at the reactive carbons affects the fluorescent property of the closed-ring isomers. The closed-ring isomers >2b–>5b with ethyl, n-propyl, i-propyl, and i-butyl substituents show higher fluorescence quantum yields than >1b with methyl substituents. In polar solvents, the fluorescence quantum yield of >1b markedly decreases, while >2b–>5b maintain the relatively high fluorescence quantum yields. Although the cycloreversion quantum yields of the derivatives with methyl, ethyl, n-propyl, and i-propyl substituents are quite low and in the order of 10−5, introduction of i-butyl substituents was found to increase the yield up to the order of 10−3. These results indicate that appropriate alkyl substitution at the reactive carbons is indispensable for properly controlling the photoswitching and fluorescent properties of the photoswitchable fluorescent diarylethenes, which are potentially applicable to super-resolution fluorescence microscopies.
机译:1,2-双(2-烷基-4-甲基-5-苯基-3-噻吩基)全氟环戊烯砜衍生物的光开关和荧光性质,> 1 – > 5 ,研究了在噻吩1,1-二氧化环的活性碳(2-和2'-位)具有甲基,乙基,正丙基,异丙基和异丁基取代基的化合物。二芳烃> 1 – > 5 在紫外线(UV)和可见光交替照射下发生开环和闭环形式之间的异构化反应,并显示出闭环形式的荧光。活性碳上的烷基取代会影响闭环异构体的荧光性质。带有乙基,正丙基,异丙基和异丁基取代基的闭环异构体> 2b – > 5b 显示的荧光量子产率高于> 1b 具有甲基取代基。在极性溶剂中,> 1b 的荧光量子产率显着降低,而> 2b – > 5b 则保持相对较高的荧光量子产率。尽管具有甲基,乙基,正丙基和异丙基取代基的衍生物的环还原量子产率非常低,大约为10 -5 ,但发现引入异丁基取代基可以将产量提高到10 −3 的数量级。这些结果表明,在活性碳上适当的烷基取代对于适当地控制可光开关的荧光二芳烃的光开关和荧光性质是必不可少的,这可能适用于超分辨率荧光显微技术。

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