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Highly selective colorimetric receptors for detection of fluoride ion in aqueous solution based on quinone-imidazole ensemble-Influence of hydroxyl group

机译:基于醌-咪唑结合的高选择性比色受体检测水溶液中的氟离子-羟基的影响

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摘要

Two new quinone-imidazole ensembles are prepared, characterized and their fluoride ion sensing properties are investigated in aq. HEPES buffer-DMSO (70-30 v/v) medium (pH = 7.26). Introduction of phenolic hydroxyl group, as an additional H-bond donor moiety, is found to dramatically increase the selectivity of the receptors towards fluoride ion and also accommodates 70% of water in the sensing medium. The hydroxyl group is also found to reduce the acidity of the imidazole N-H proton significantly through its strong electron releasing resonance effect (Swain Lupton Constant R = -0.70). The colour of the solutions of these receptors instantaneously changes from yellow to red upon addition of fluoride ion, while it remains unaffected upon addition of other common anions. This observation is well supported by UV-vis, fluorescence titration and quantum yield determination studies.~1H NMR titration indicates that the mechanism of sensing involves formation of H-bonding between fluoride ion and imidazole N-H and phenolic O-H moieties simultaneously with fairly high binding constants (10~5 M~(-1)). The results of electrochemical and theoretical studies substantiate the proposed mechanism.
机译:制备了两种新的醌-咪唑合奏,对其进行了表征,并在水溶液中研究了它们对氟离子的传感特性。 HEPES缓冲液-DMSO(70-30 v / v)培养基(pH = 7.26)。发现引入酚羟基作为附加的H键供体部分,可以显着提高受体对氟离子的选择性,并且还可以在传感介质中容纳70%的水。还发现羟基通过其强大的电子释放共振效应而显着降低了咪唑N-H质子的酸度(Swain Lupton常数R = -0.70)。添加氟离子后,这些受体溶液的颜色立即从黄色变为红色,而添加其他常见阴离子后,其颜色保持不变。紫外可见,荧光滴定和量子产率测定研究为该观察提供了有力支持。〜1 H NMR滴定表明,传感机理涉及氟离子与咪唑NH和酚OH部分之间同时形成H键,同时具有相当高的结合常数。 (10〜5 M〜(-1))。电化学和理论研究的结果证实了所提出的机理。

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