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葫芦脲-客体对具有皮摩尔级的离解常数。

Cucurbit[7]uril⋅guest pair with an attomolar dissociation constant.

机构信息

Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742 (USA).

出版信息

Angew Chem Int Ed Engl. 2014 Jan 20;53(4):988-93. doi: 10.1002/anie.201309635. Epub 2014 Jan 2.

Abstract

Host⋅guest complexes between cucurbit[7] (CB[7]) or CB[8] and diamantane diammonium ion guests 3 or 6 were studied by (1) H NMR spectroscopy and X-ray crystallography. (1) H NMR competition experiments revealed that CB[7]⋅6 is among the tightest monovalent non-covalent complexes ever reported in water with Ka =7.2×10(17)  M(-1) in pure D2 O and 1.9×10(15)  M(-1) in D2 O buffered with NaO2 CCD3 (50 mM). The crystal structure of CB[7]⋅6 allowed us to identify some of the structural features responsible for the ultratight binding, including the distance between the NMe3 (+) groups of 6 (7.78 Å), which allows it to establish 14 optimal ion-dipole interactions with CB[7], the complementarity of the convex van der Waals surface contours of 6 with the corresponding concave surfaces of CB[7], desolvation of the CO portals within the CB[7]⋅6 complex, and the co-linearity of the C7  axis of CB[7] with the N(+) ⋅⋅⋅N(+) line in 6. This work further blurs the lines of distinction between natural and synthetic receptors.

摘要

冠醚[7](CB[7])或 CB[8]与金刚烷二铵离子客体 3 或 6 的主客体配合物通过(1)H NMR 光谱和 X 射线晶体学进行了研究。(1)H NMR 竞争实验表明,CB[7]⋅6 是在水中报道的最紧密的单价非共价配合物之一,在纯 D2 O 中的 Ka =7.2×10(17)M(-1),在 D2 O 缓冲的 NaO2 CCD3(50 mM)中为 1.9×10(15)M(-1)。CB[7]⋅6 的晶体结构使我们能够确定一些导致超紧密结合的结构特征,包括 6 的 NMe3(+)基团之间的距离(7.78 Å),这使其能够与 CB[7]建立 14 个最佳的离子偶极相互作用,6 的凸范德华表面轮廓与 CB[7]的相应凹面的互补性,CB[7]⋅6 配合物内 CO 门的去溶剂化,以及 CB[7]的 C7 轴与 6 中 N(+) ⋅⋅⋅N(+)线的共线性。这项工作进一步模糊了天然和合成受体之间的区别。

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