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弯曲的主体和第二客体协同抑制corannulene 的动态运动。

A curved host and second guest cooperatively inhibit the dynamic motion of corannulene.

机构信息

Department of Chemistry, University of Cambridge, Cambridge, UK.

School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou, China.

出版信息

Nat Commun. 2021 Jul 2;12(1):4079. doi: 10.1038/s41467-021-24344-w.

Abstract

Biomolecular systems show how host-guest binding can induce changes in molecular behavior, which in turn impact the functions of the system. Here we report an artificial host-guest system where dynamic adaptation during guest binding alters both host conformation and guest dynamics. The self-assembled cage host employed here possesses concave walls and a chirotopic cavity. Complementarity between the curved surfaces of fullerenes and the inner surface of the host cavity leads the host to reconfigure stereochemically in order to bind these guests optimally. The curved molecule corannulene undergoes rapid bowl-to-bowl inversion at room temperature. Its inversion barrier is increased upon binding, however, and increased further upon formation of a ternary complex, where corannulene and a cycloalkane are both bound together. The chiral nature of the host also leads to clear differences in the NMR spectra of ternary complexes involving corannulene and one or the other enantiomer of a chiral guest, which enables the determination of enantiomeric excess by NMR.

摘要

生物分子体系展示了主客体结合如何诱导分子行为的变化,而这些变化又会影响体系的功能。在这里,我们报告了一个人工主客体体系,其中客体结合过程中的动态适应会改变主体构象和客体动力学。这里使用的自组装笼状主体具有凹面壁和手性空腔。富勒烯的曲面与主体空腔的内表面之间的互补性导致主体进行立体化学重构,以便最佳地结合这些客体。弯曲分子corannulene 在室温下快速进行碗到碗的反转。然而,其反转势垒在结合时增加,并且在形成三元复合物时进一步增加,其中 corannulene 和环烷烃都被结合在一起。主体的手性也导致涉及 corannulene 和手性客体的一个或另一个对映异构体的三元复合物的 NMR 光谱有明显差异,这使得通过 NMR 确定对映体过量成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3080/8253762/f09f6802161b/41467_2021_24344_Fig1_HTML.jpg

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