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Fluorescence enhancement upon gelation and thermally-driven fluorescence switches based on tetraphenylsilole-based organic gelators

机译:基于四苯基甲硅烷基有机胶凝剂的凝胶化和热驱动荧光开关的荧光增强

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摘要

Two new organic gelators 1 and 2 based on the silole (silacyclopentadiene) framework were designed with the end to develop switchable fluorescent organogels, by making use of the aggregation-induced emission (AIE) feature of silole derivatives. As for other silole derivatives, compounds 1 and 2 exhibited AIE behavior as indicated by the significant fluorescence enhancement by introducing water to the THF solutions. Compounds 1 and 2 can gel hexane, methylcyclohexane and heptane. Large fluorescence enhancement was observed for compounds 1 and 2 after gelation. Moreover, their fluorescence intensities can be changed reversibly accompanying the gel-solution transition through alternating cooling and heating. Therefore, thermally-driven fluorescence switches can be achieved with organogels based on 1 and 2.
机译:设计了两种基于甲硅烷基(硅环戊二烯)骨架的新型有机胶凝剂1和2,最终通过利用甲硅油衍生物的聚集诱导发射(AIE)特性开发了可切换的荧光有机凝胶。对于其他甲硅烷基衍生物,化合物1和2表现出AIE行为,这是通过将水引入THF溶液而显着增强荧光所表明的。化合物1和2可以使己烷,甲基环己烷和庚烷胶凝。胶凝后,化合物1和2的荧光增强很大。此外,它们的荧光强度可以通过交替的冷却和加热伴随着凝胶-溶液转变而可逆地改变。因此,使用基于1和2的有机凝胶可以实现热驱动的荧光开关。

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