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Spectroscopic, structural, and theoretical studies of halide complexes with a urea-based tripodal receptor

机译:卤化物与尿素基三脚架受体的配合物的光谱,结构和理论研究

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摘要

A urea-based tripodal receptor L substituted with p-cyanophenyl groups has been studied for halide anions using 1H NMR spectroscopy, density functional theory (DFT) calculations, and X-ray crystallography. The ~1H NMR titration studies suggest that the receptor forms a 1:1 complex with an anion, showing a binding trend in the order of fluoride > chloride > bromide > iodide. The interaction of a fluoride anion with the receptor was further confirmed by 2D NOESY and ~(19)F NMR spectroscopy in DMSO-d _6. DFT calculations indicate that the internal halide anion is held by six NH?X interactions with L, showing the highest binding energy for the fluoride complex. Structural characterization of the chloride, bromide, and silicon hexafluoride complexes of [LH ~+] reveals that the anion is externally located via hydrogen bonding interactions. For the bromide or chloride complex, two anions are bridged with two receptors to form a centrosymmetric dimer, while for the silicon hexafluoride complex, the anion is located within a cage formed by six ligands and two water molecules.
机译:已使用1H NMR光谱,密度泛函理论(DFT)计算和X射线晶体学研究了被对氰基苯基取代的基于脲的三脚架受体L,用于卤化物阴离子。 〜1H NMR滴定研究表明该受体与阴离子形成1:1的络合物,并显示出氟化物>氯化物>溴化物>碘化物的结合趋势。通过DMSO-d _6中的2D NOESY和〜(19)F NMR光谱进一步证实了氟阴离子与受体的相互作用。 DFT计算表明,内部卤化物阴离子通过与L的六次NH2X相互作用而保持,显示出与氟化物配合物的最高结合能。 [LH〜+]的氯化物,溴化物和六氟化硅络合物的结构特征表明,阴离子通过氢键相互作用位于外部。对于溴化物或氯化物络合物,两个阴离子与两个受体桥接形成中心对称的二聚体,而对于六氟化硅络合物,阴离子位于由六个配体和两个水分子形成的笼中。

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