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首页> 外文期刊>Angewandte Chemie >Squeezing Fluoride out of Water with a Neutral Bidentate Antimony(V) Lewis Acid
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Squeezing Fluoride out of Water with a Neutral Bidentate Antimony(V) Lewis Acid

机译:用中性双齿锑(V)路易斯酸从水中挤压氟化物

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摘要

Because of hydration, fluoride ions in water typically elude complexation by neutral Lewis acids. Here, we show how this limitation can be overcome with a bidentate Lewis acid containing two antimony(V) centers. This derivative (2) is obtained by the simple reaction of 4,5-bis(diphenylstibino)-9,9-dimethylxanthene (1) with two equivalents of 3,4,5,6-tetrachlorobenzoquinone (o-chloranil). It features two square-pyramidal stiborane units oriented in a face-to-face fashion. Titration experiments show that this new bidentate Lewis acid binds fluoride in aqueous solutions containing 95% water with a binding constant (K) of 700 +/- 30M(-1). The structure of the fluoride adduct confirms fluoride anion chelation between the two antimony centers.
机译:由于水合,水中的氟离子通常无法被中性路易斯酸络合。在这里,我们展示了如何使用含有两个锑(V)中心的双齿路易斯酸来克服这一局限性。该衍生物(2)是通过4,5-双(二苯基二苯乙烯基)-9,9-二甲基x吨(1)与2当量的3,4,5,6-四氯苯醌(邻氯苯醌)的简单反应而获得的。它具有两个以面对面方式定向的方金字塔形西硼烷单元。滴定实验表明,这种新的双齿路易斯酸与含95%水的水溶液中的氟化物结合,结合常数(K)为700 +/- 30M(-1)。氟化物加合物的结构证实了两个锑中心之间的氟化物阴离子螯合。

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