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金属封端环糊精的核磁共振交换动力学研究揭示了溶液中主体-客体复合物的多种存在形式。

NMR exchange dynamics studies of metal-capped cyclodextrins reveal multiple populations of host-guest complexes in solution.

作者信息

Goren Elad, Iron Mark A, Diskin-Posner Yael, Falkovich Alla, Avram Liat, Bar-Shir Amnon

机构信息

Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science Rehovot 7610001 Israel

Department of Chemical Research Support, Weizmann Institute of Science Rehovot 7610001 Israel.

出版信息

Chem Sci. 2023 Sep 7;14(41):11351-11358. doi: 10.1039/d3sc03630h. eCollection 2023 Oct 25.

Abstract

Metal-capped molecular hosts are unique in supramolecular chemistry, benefitting from the inner cavity's hydrophobic nature and the metal center's electrochemical properties. It is shown here that the paramagnetic properties of the metals in lanthanide-capped cyclodextrins (Ln-α-CDs and Ln-β-CDs) are a convenient NMR indicator for different populations of host-guest complexes in a given solution. The paramagnetic guest exchange saturation transfer (paraGEST) method was used to study the exchange dynamics in systems composed of Ln-α-CDs or Ln-β-CDs with fluorinated guests, revealing multiple co-existing populations of host-guest complexes exclusively in solutions containing Ln-β-CDs. The enhanced spectral resolution of paraGEST, achieved by a strong pseudo contact shift induction, revealed that different molecular guests can adopt multiple orientations within Ln-β-CDs' cavities and, in contrast, only a single orientation inside Ln-α-CDs. Thus, paraGEST, which can significantly improve NMR detectability and spectral resolution of host-guest systems that experience fast exchange dynamics, is a convenient tool for studying supramolecular systems of metal-capped molecular hosts.

摘要

金属封端的分子主体在超分子化学中独具特色,这得益于其内腔的疏水性质以及金属中心的电化学性质。本文表明,镧系元素封端的环糊精(Ln-α-CD和Ln-β-CD)中金属的顺磁性质是给定溶液中不同主客体络合物群体的便捷核磁共振指示剂。采用顺磁客体交换饱和转移(paraGEST)方法研究了由Ln-α-CD或Ln-β-CD与氟化客体组成的体系中的交换动力学,结果表明仅在含有Ln-β-CD的溶液中存在多个共存的主客体络合物群体。通过强伪接触位移诱导实现的paraGEST增强光谱分辨率表明,不同的分子客体在Ln-β-CD的腔内可以采取多种取向,相比之下,在Ln-α-CD内仅采取单一取向。因此,paraGEST能够显著提高经历快速交换动力学的主客体体系的核磁共振检测能力和光谱分辨率,是研究金属封端分子主体超分子体系的便捷工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c6d/10599603/1a51eef7a21b/d3sc03630h-f1.jpg

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