首页> 外文期刊>The Journal of Organic Chemistry >Anion Recognition by a Macrobicycle Based on a Tetraoxadiaza Macrocycle and an Isophthalamide Head Unit
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Anion Recognition by a Macrobicycle Based on a Tetraoxadiaza Macrocycle and an Isophthalamide Head Unit

机译:基于四恶草大环化合物和间苯二甲酰胺主单元的大环化合物对阴离子的识别

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A macrobicycle formed by a tetraoxadiaza macrocycle containing a dibenzofuran (DBF) spacer and an isophthalamide head unit, named DBF-bz, was used as receptor for anion recognition. The molecular structure of DBF-bz was established in solution by NMR and ESI-MS spectroscopies and in single crystal by X-ray diffraction analysis. The X-ray structure showed a water molecule encapsulated into the macrobicyclic cavity by four hydrogen bonds, two of them involving the two N-H amide binding sites and the oxygen of the water molecule (N-H· · ·O hydrogen bonds) and the other two (O-H· · · N) involving the amine groups as hydrogen bonding acceptors. 1H NMR temperature dependence studies demonstrated that the same structure exists in solution. The ability of this ditopic receptor to recognize alkali halide salts was evaluated by extraction studies followed by 1H NMR and ESI-MS spectroscopies. The macrobicycle showed a capacity to extract halide salts from aqueous solutions into organic phases. The binding ability of this macrobicycle for halides was also quantitatively investigated using 1H NMR titrations in CDCl3 (and DMSO-d6) solution, and in acidic D2O solution. The largest binding association constant was found for the chloride anion and the completely protonated receptor. The results suggest that the diammonium-diamide unit of the receptor strongly bind the anionic substrate via multiple N-H· · · Cl- hydrogen bonds and electrostatic interactions. The binding trend follows the order Cl- > Br- > I- ≈ F- established from the best fit between the size of the anion and the cavity size of the protonated macrobicycle. Molecular dynamics (MD) simulations of the DBF-bz in CHCl3 solution allowed a detailed insight into the structural and binding properties of the receptor.
机译:由包含二苯并呋喃(DBF)间隔基和间苯二甲酰胺头单元的四恶二氮杂大环形成的大环骑自行车被用作阴离子识别受体。 DBF-bz的分子结构通过NMR和ESI-MS光谱在溶液中建立,并通过X射线衍射分析在单晶中建立。 X射线结构显示水分子被四个氢键包裹在大双环腔中,其中两个涉及两个NH酰胺键和水分子的氧(NH···O氢键),另外两个涉及OH···N)涉及胺基作为氢键受体。 1 H NMR温度依赖性研究表明溶液中存在相同的结构。通过提取研究,随后的1H NMR和ESI-MS光谱学评估了该二位受体识别碱金属卤化物盐的能力。大自行车显示出将卤化物盐从水溶液中萃取到有机相中的能力。还使用1H NMR滴定在CDCl3(和DMSO-d6)溶液以及在酸性D2O溶液中定量研究了这种大自行车对卤化物的结合能力。对于氯离子和完全质子化的受体,发现最大的结合缔合常数。结果表明,受体的二铵-二酰胺单元通过多个N-H···Cl-氢键和静电相互作用牢固地与阴离子底物结合。结合趋势遵循Cl-> Br-> I-≈F-的顺序,该顺序是由阴离子大小与质子化大分子环的空腔大小之间的最佳拟合确定的。 DBF-bz在CHCl3溶液中的分子动力学(MD)模拟可以深入了解受体的结构和结合特性。

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