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范德华力和阳离子-π 相互作用之间的平衡稳定疏水性组装体。

A Balance between van der Waals and Cation-π Interactions Stabilizes Hydrophobic Assemblies.

机构信息

Department of Basic Science, Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo, 153-8902, Japan.

Quantum Chemistry Division, Graduate School of Science, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, Kanagawa, 236-0027, Japan.

出版信息

Chemistry. 2018 Jun 26;24(36):9130-9135. doi: 10.1002/chem.201801376. Epub 2018 Jun 1.

Abstract

A thermally highly stable molecular self-assembly (nanocube) in water, the decomposition temperature of which is 415 K, was developed by designing a gear-shaped amphiphile (GSA) with an indented hydrophobic surface, even though the nanocube is stabilized only by van der Waals (vdW) and cation-π interactions as well as the hydrophobic effect. The introduction of an electron-donating substituent in one of the benzene rings of the GSA increased the decomposition temperature by 12 K, which is due to the stronger cation-π interactions between the benzene ring and positively charged pyridinium rings and tighter molecular meshing between the GSAs in the nanocube. The position of the substituent introduced in the benzene ring greatly affects the thermal stability of the nanocubes, and this indicates that both vdW (molecular meshing) and cation-π interactions are crucial for improving the thermal stability of the hydrophobic assemblies.

摘要

发展了一种在水中热稳定性非常高的分子自组装体(纳米立方),其分解温度为 415 K。通过设计一种带有凹面疏水表面的齿轮状两亲分子(GSA),即使纳米立方体仅通过范德华(vdW)和阳离子-π相互作用以及疏水作用稳定,也可以实现这一点。在 GSA 的一个苯环中引入供电子取代基,将分解温度提高了 12 K,这是由于苯环和带正电荷的吡啶环之间的阳离子-π相互作用更强,以及纳米立方体内 GSAs 之间的分子啮合更紧密。苯环中引入取代基的位置对纳米立方的热稳定性有很大影响,这表明 vdW(分子啮合)和阳离子-π相互作用对于提高疏水性组装体的热稳定性都是至关重要的。

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