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An exclusive fluoride receptor: Fluoride-induced proton transfer to a quinoline-based thiourea

机译:独有的氟化物受体:氟化物引起的质子转移至基于喹啉的硫脲

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摘要

A new quinoline-based tripodal thiourea has been synthesized, which exclusively binds fluoride anion in DMSO, showing no affinity for other anions including, chloride, bromide, iodide, perchlorate, nitrate and hydrogen sulfate. As investigated by 1H NMR, the receptor forms both 1:1 and 1:2 complex yielding the binding constants of 2.32(3) (in log β1) and 4.39(4) (in log β2), respectively; where quinoline groups are protonated by the fluoride-induced proton transfer from the solution to the host molecule. The 1:2 binding is due to the interactions of one fluoride with NH binding sites of urea sites and another fluoride with secondary +NH binding sites within the tripodal pocket. The formation of both 1:1 and 1:2 complexes has been confirmed by the theoretical calculations based on density functional theory (DFT).
机译:已经合成了一种新的基于喹啉的三脚架硫脲,该硫脲仅与DMSO中的氟阴离子结合,对其他阴离子(包括氯离子,溴离子,碘离子,高氯酸根,硝酸根和硫酸氢根)没有亲和力。如通过 1 NMR所研究的,受体形成1:1和1:2的复合物,产生的结合常数分别为2.32(3)(log log1)和4.39(4)(logβ2) , 分别;其中喹啉基团由氟化物诱导的质子从溶液转移到主体分子而质子化。 1:2的结合是由于三脚架口袋中一个氟化物与尿素位点的NH结合位点和另一个氟化物与次级 + NH结合位点的相互作用。通过基于密度泛函理论(DFT)的理论计算已经证实了1:1和1:2配合物的形成。

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