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Naphthoimidazolium based ratiometric fluorescent probes for F- and CN-, and anion-activated CO2 sensing

机译:基于萘咪唑鎓的F-和CN-和阴离子活化的CO2感测的比例荧光探针

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摘要

The results of the current study show that fluoride and cyanide recognition by two naphthoimidazolium derivatives can be applied to CO2 sensing. Among various anions, only fluoride and cyanide promote changes in absorption and fluorescence wavelegnth maxima of the naphthoimidazolium derivative in CH3CN. The changes are attributed to (C-H)(+)-anion(-) ionic hydrogen bonding interactions between the conjugated imidazolium salts and these anions. Especially important is the observations that the fluorescence emission maxima of the naphthoimidazolium derivative at 465 nm undergo hysochromic shifts to 375 nm upon addition of fluoride and cyanide exclusively. The naphthoimidazolium derivatives undergo highly selective changes in their fluoerecence maximum from 465 nm to 375 nm upon addition of CN- even when 2% water is present in the CH3CN solution. Moreover, exposure of the solution of CN- activated naphthoimidazolium derivative to CO2 promotes a red shift of emission maximum back to 465 nm. The results demonstrate that the naphthoimidazolium derivatives can be utilized for anion activated ratiometric sensing of CO2.
机译:目前研究的结果表明,通过两个萘咪唑鎓衍生物的氟化物和氰化物识别可以应用于CO 2感测。在各种阴离子中,只有氟化物和氰化物促进CH3CN中萘硫代唑鎓衍生物的吸收和荧光双层最大值的变化。该变化归因于缀合的咪唑鎓盐和这些阴离子之间的(C-H)(+) - 阴离子( - )离子氢键相互作用。特别重要的是观察到在465nm处,在加入氟化物和氰化物的情况下,在465nm处,在465nm处的荧光发射最大值在465nm处经历杂种变化至375nm。在加入CN时,萘咪唑鎓衍生物在加入CN时,在加入CN后,在其氟化症的最大值最大的变化最大值 - 即使在CH 3CN溶液中存在2%水。此外,CN-活化的萘硫代唑鎓衍生物溶液的暴露促进发射最大值的红色移位回到465nm。结果表明,萘咪唑鎓衍生物可用于CO 2的阴离子活化比感测。

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