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通过具有局部柔性的金属有机框架中动态客体适应性配体旋转实现异构体识别

Isomer recognition by dynamic guest-adaptive ligand rotation in a metal-organic framework with local flexibility.

作者信息

Zhao Ying-Jie, Tang Wen-Qi, Wang Xiao-Wei, Zhao Hui-Fang, Gu Zhi-Yuan, Yang Qingyuan, Liu Dahuan

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology Beijing 100029 PR China

Jiangsu Key Laboratory of Biofunctional Materials, College of Chemistry and Materials Science, Nanjing Normal University Nanjing 210023 PR China.

出版信息

Chem Sci. 2022 Sep 27;13(40):11896-11903. doi: 10.1039/d2sc03923k. eCollection 2022 Oct 19.

Abstract

Local flexibility in a metal-organic framework is intriguing for reconstructing a microenvironment to distinguish different guest molecules by emphasizing their differences. Herein, guest-adaptive flexibility is observed in a metal-organic framework for efficiently discriminating aromatic isomers. Microcrystal electron diffraction directly reveals that the anthracene rings can rotate around the single bond with the adsorption of guest molecules. Disorder transformation of the ligand enables the preferential adsorption of ethylbenzene over other xylene isomers. Especially, a coated capillary column combining single/multi-component adsorption confirms a unique separation order of ethylbenzene > -xylene > -xylene > -xylene with excellent selectivities, which has not been reported in other materials. Density functional theory calculations and the calculated Hirshfeld surface of guest molecules in the framework demonstrate that a guest-induced splint-like confinement structure makes the main contribution to such separation performance. This finding will provide a rational strategy for molecular recognition utilizing the local flexibility of metal-organic frameworks.

摘要

金属有机框架中的局部灵活性对于重建微环境以通过强调不同客体分子之间的差异来区分它们很有吸引力。在此,在一种金属有机框架中观察到客体适应性灵活性,用于有效区分芳香异构体。微晶电子衍射直接表明,蒽环可随着客体分子的吸附围绕单键旋转。配体的无序转变使得乙苯比其他二甲苯异构体更优先吸附。特别是,结合单/多组分吸附的涂覆毛细管柱证实了乙苯>间二甲苯>对二甲苯>邻二甲苯这种独特的分离顺序,且具有优异的选择性,这在其他材料中尚未见报道。密度泛函理论计算以及框架中客体分子的计算 Hirshfeld 表面表明,客体诱导的夹板状限制结构对这种分离性能起主要作用。这一发现将为利用金属有机框架的局部灵活性进行分子识别提供一种合理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9287/9580480/41f798724402/d2sc03923k-f1.jpg

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