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首页> 外文期刊>The Journal of Organic Chemistry >Switching from Negative-Cooperativity to No-Cooperativity in the Binding of Ion-Pair Dimers by a Bis(calix[4]pyrrole) Macrocycle
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Switching from Negative-Cooperativity to No-Cooperativity in the Binding of Ion-Pair Dimers by a Bis(calix[4]pyrrole) Macrocycle

机译:通过BIS(Calix [4]吡咯)宏观(Calix [4]吡咯的离子对二聚体结合的负合作效应

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摘要

We report the synthesis of a macrocyclic receptor containing two di-meso-phenylcalix[4]pyrrole units linked by two triazole spacers. The 1,4-substitution of the 1,2,3-triazole spacers conveys different binding affinities to the two heteroditopic binding sites. These features make the receptor an ideal candidate to investigate allosteric cooperativity in the binding of ion-pair dimers. We probed the interaction of tetraalkylammonium salts (TBA center dot Cl, TBA center dot OCN, and MTOA center dot Cl) with the tetra-heterotopic macrocyclic receptor in chloroform solution using H-1 NMR spectroscopic titration experiments. The results obtained show that, at millimolar concentration, the addition of 2 equiv of the salt to the receptor's solution induced the quantitative pairwise binding of the ion-pairs. The 2:1 (ion-pair:receptor) complexes feature different binding geometries and binding cooperativities depending on the nature of the alkylammonium cation. The binding geometries assigned to the complexes of the ion-pair dimers in solution are fully supported by X-ray diffraction analyses of single crystals. The thermodynamic features of the binding processes (separate or concomitant formation of 1:1 and 2:1 complexes), derived from isothermal titration calorimetry (ITC) experiments, are rationalized by combining the different ion-pair binding modes of the salt dimers with the dissimilar electronic properties of the two nearby heteroditopic binding sites of the receptor.
机译:我们报道了由两个三唑间隔物连接的两种二甲苯基碱[4]吡咯单元的宏环受体的合成。 1,2,3-三唑间隔物的1,4-取代将不同的结合亲和力传送到两个异分开素结合位点。这些特征使受体是研究离子对二聚体结合中的变构合作性的理想候选者。使用H-1 NMR光谱滴定实验探讨了四烷基铵盐(TBA中心点CL,TBA CL,TBA中心点OCN和MTOA中心点C1)与氯仿溶液中的四异位型大环受体的相互作用。得到的结果表明,在毫米摩尔浓度下,向受体溶液中加入2当量的盐诱导离子对的定量成对结合。根据烷基铵阳离子的性质,2:1(离子对:受体)复合物具有不同的结合几何形状和结合协作。分配给溶液中离子对二聚体的复合物的结合几何是单晶的X射线衍射分析的完全支持。衍生自等温滴定热量(ITC)实验的结合过程(单独或伴随形成1:1和2:1络合物)的热力学特征是通过将盐二聚体的不同离子对结合模式组合来合理化两个附近的两个过学性结合位点的不同电子性质。

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