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Anion Binding Affinity: Acidity versus Conformational Effects

机译:阴离子结合亲和力:酸度与构象效应

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High-level quantum chemical calculations were used to elucidate the gas- and solution-phase conformational equilibria for a series of symmetrically substituted (thio)ureas, (thio)squaramides, and croconamides. Gas-phase calculations predict that the thermodynamic conformer of many of these anion receptors is not the dual-hydrogenbond-facilitating anti-anti conformer as is commonly assumed. For N,N'-diary' thiosquaramides and croconamides, the syn-syn conformer is typically the predominant conformer. Solution-phase calculations show that the anti-anti conformer is increasingly stabilized as the polarity of the solvent increases. However, the syn- syn conformer remains the lowest energy conformation for croconamides. These predictions are used to explain the acidity versus chloride binding affinity correlations recently reported for some of these compounds. The chloride binding constants for thioureas and croconamides are significantly lower than expected on the basis of their pK(a) values, and this may be due in part to the need for these receptors to reorganize into the anti-anti conformer. Experimental NMR nuclear Overhauser effect (NOE) measurements of an asymmetrically substituted squaramide and its thio analogue are consistent with the syn-syn conformation being predominant at 298 K. The conformational equilibria should therefore be an important consideration for the design and development of future anion receptors and organocatalysts.
机译:用于阐明高水位量子化学计算来阐明一系列对称取代(ThiO)脲,(ThiO)Squaramides和Croconamides的气体和溶液相构象平衡。气相计算预测许多这些阴离子受体的热力学簇不是通常假设的双氢突出者促进的抗抗体。对于N,N'-日记'硫代芳基芳基芳基芳基芳基芳基,同步组合剂通常是主要的符合子。溶液相的计算表明,由于溶剂的极性增加,抗抗诱变剂越来越稳定。然而,Syn-Syn Conformer仍然是Croconamides的最低能量构象。这些预测用于解释最近向其中一些化合物报告的酸度与氯化物结合亲和力相关性相关。硫脲和番酸酰胺的氯化物结合常数在其PK(A)值的基础上显着低于预期,这可能部分是需要这些受体重新组织到抗抗诱变剂中。非对称取代的Squaramide的实验性NMR核传承效应(NOE)测量的不对称取代的Squaramide及其硫代类似物是一致的,其在298K处具有占主导地位的同步构象。因此,构象均衡应该是对未来阴离子受体的设计和开发的重要考虑因素和有机催化剂。

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