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Lewis acidic stiborafluorenes for the fluorescence turn-on sensing of fluoride in drinking water at ppm concentrations

机译:Lewis酸性硬脂芴用于以ppm浓度检测饮用水中的氟化物

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Prompted by the importance of fluoride in fields such as drinking water analysis and ~(18)F-positron emission tomography, we have synthesized and investigated three Lewis acidic organostiboranes containing the (2,2'-biphenylene)phenylantimony(v) moiety as a common subunit and a catecholate (1), a tetrachlorocatecholate (2) or an alizarin (alizarin = 1,2-dihydroxyanthraquinone) ligand (3). DFT calculations show that the Lewis acidity of these stiboranes arises from the presence of a low lying antimony-centered orbital. While 1 shows no measurable fluoride anion affinity in 7/3 vol. THF-water mixtures, spectrophotometric titrations show that the more electron deficient stiboranes 2 and 3 bind fluoride anions in the same medium with binding constants (K) of 13 500 (±1400 M~(-1)) for 2 and 16100 (±1100) M~(-1) for 3. Formation of the fluoride complexes has been confirmed by isolation of TAS[2-F] and TAS[3-F] (TAS = tris(dimethylamino)sulfonium), the structures of which have also been determined. While formation of [2-F]~- does not trigger a marked photophysical response, a color change from yellow to dark red is observed upon conversion of 3 into [3-F]~- in CH2Cl2. This color change, which has been investigated using TD-DFT calculations, is also accompanied by an increase in the fluorescence of the alizarin chromophore at 616 nm. Owing to its high fluoride affinity and fluorescence turn-on properties, 3 can be used in biphasic water-CH2Cl2 mixtures to assay sub-ppm fluoridation levels in tap water or bottled infant drinking waters.
机译:氟化物在饮用水分析和〜(18)F-正电子发射断层扫描等领域中的重要性提示,我们合成并研究了三种路易斯酸性有机锡硼烷,它们含有(2,2'-联亚苯基)苯基锑(v)部分作为常见的亚基和儿茶酚酸酯(1),四氯儿茶酚酸酯(2)或茜素(茜素= 1,2-二羟基蒽醌)配体(3)。 DFT计算表明,这些低硼烷的路易斯酸度是由于存在以锑原子为中心的低轨道所致。尽管1显示在7/3体积中没有可测量的氟阴离子亲和力。 THF-水混合物,分光光度滴定表明,电子缺陷较少的二硼烷2和3在同一介质中以2 500和16100(±1100)的结合常数(K)为13 500(±1400 M〜(-1))结合氟阴离子。 )M〜(-1)表示3。通过分离TAS [2-F]和TAS [3-F](TAS =三(二甲基氨基)ulf)证实了氟化物的形成。被确定。尽管[2-F]〜-的形成不会触发明显的光物理响应,但是在CH2Cl2中将3转化为[3-F]〜-时,观察到从黄色到深红色的颜色变化。已经使用TD-DFT计算研究了这种颜色变化,同时还伴随着茜素生色团在616 nm处荧光的增加。由于其具有高的氟化物亲和力和荧光开启特性,因此可以在双相水-CH2Cl2混合物中使用3来分析自来水或瓶装婴儿饮用水中的亚ppm氟化水平。

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