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混合酰胺/脲大环化合物中选择性和稳定性的构象控制

Conformational control of selectivity and stability in hybrid amide/urea macrocycles.

作者信息

Brooks Simon J, García-Garrido Sergio E, Light Mark E, Cole Pamela A, Gale Philip A

机构信息

School of Chemistry, University of Southampton, Southampton, SO171BJ United Kingdom.

出版信息

Chemistry. 2007;13(12):3320-9. doi: 10.1002/chem.200601647.

Abstract

The anion-binding properties of two similar hybrid amide/urea macrocycles containing either a 2,6-dicarboxamidophenyl or a 2,6-dicarboxamidopyridine group are compared. Significant differences in anion affinity and mode of interaction with anions are attributed to the presence of intramolecular hydrogen bonds in the pyridine system. In fact, remarkably, the phenyl macrocycle undergoes amide hydrolysis under neutral conditions in DMSO/water. The anion binding abilities of the receptors are compared to those of acyclic analogues of the macrocycles that show that the phenyl receptor behaves in a similar fashion to acyclic urea-containing receptors (i.e., showing little selectivity amongst oxo anions), whilst the pyridine-containing receptor shows a high affinity and selectivity for carboxylates.

摘要

比较了两种相似的含有2,6 - 二羧酰胺基苯基或2,6 - 二羧酰胺基吡啶基团的酰胺/脲杂化大环化合物的阴离子结合特性。阴离子亲和力和与阴离子相互作用模式的显著差异归因于吡啶体系中分子内氢键的存在。事实上,值得注意的是,苯基大环化合物在DMSO/水的中性条件下会发生酰胺水解。将受体的阴离子结合能力与大环化合物的无环类似物进行了比较,结果表明苯基受体的行为与含无环脲的受体类似(即在含氧阴离子中选择性很小),而含吡啶的受体对羧酸盐具有高亲和力和选择性。

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