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使用富勒烯分子[Corannulene]构建凹/凸表面在液相色谱中区分π相互作用。

Differentiating π Interactions by Constructing Concave/Convex Surfaces Using a Bucky Bowl Molecule, Corannulene in Liquid Chromatography.

机构信息

Graduate School of Engineering , Kyoto University , Katsura , Nishikyo-ku , Kyoto 615-8510 , Japan.

Institute of Multidisciplinary Research for Advanced Materials , Tohoku University , 2-1-1 Katahira , Aoba-ku , Sendai 980-8577 , Japan.

出版信息

Anal Chem. 2019 Feb 5;91(3):2439-2446. doi: 10.1021/acs.analchem.8b05260. Epub 2019 Jan 9.

Abstract

Convex-concave π conjugated surfaces in hemispherical bucky bowl such as corannulene (Crn) have shown increasing utility in constructing self-assembled new functional materials owing to its unique π electrons and strong dipole. Here, we investigate these specific molecular recognitions on Crn by developing new silica-monolithic capillary columns modified with Crn and evaluating their performance in the separation of different aromatic compounds by liquid chromatography (LC). We synthesized two Crn derivatives and conjugated them onto the surface of a silica monolith. The first Crn derivative was edge functionalized, which can undergo free inversion of a convex-concave surface. The second Crn derivative was synthesized by modifying the spoke of Crn, which suppresses the convex-concave inversion. Results of LC suggest that each surface showed different shape recognition based on π interaction. Furthermore, the concave surface of Crn showed strong CH-π interaction with a planar molecule, coronene, demonstrated by the shifts of the H NMR signals of both Crn and coronene resulting from the multiple interactions between Crn and π electrons in coronene. These results clearly demonstrated the presence of CH-π interactions at multiple points, and the role of shape recognition.

摘要

具有凸凹 π 共轭表面的半球巴基碗,如苝(Crn),由于其独特的π电子和强偶极子,在构建自组装新型功能材料方面显示出越来越大的应用潜力。在这里,我们通过开发新的 Crn 修饰的硅胶整体毛细管柱来研究 Crn 的这些特定分子识别,并通过液相色谱(LC)评估它们在分离不同芳香族化合物方面的性能。我们合成了两种 Crn 衍生物,并将其共轭到硅胶整体的表面上。第一个 Crn 衍生物是边缘功能化的,它可以进行凸凹表面的自由反转。第二个 Crn 衍生物是通过修饰 Crn 的辐条合成的,它抑制了凸凹反转。LC 的结果表明,每个表面都基于π相互作用表现出不同的形状识别。此外,Crn 的凹面与平面分子 coronene 表现出强烈的 CH-π 相互作用,这一点可以通过 Crn 和 coronene 的 H NMR 信号的位移来证明,这是由于 Crn 和 coronene 中的π电子之间的多重相互作用导致的。这些结果清楚地表明存在多点 CH-π 相互作用和形状识别的作用。

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