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通过溶剂混合精确控制分子万向节的温度驱动手性转变。

Precise Manipulation of Temperature-Driven Chirality Switching of Molecular Universal Joints through Solvent Mixing.

机构信息

Key Laboratory of Green Chemistry &, Technology of the Ministry of Education, College of Chemistry, State Key Laboratory of Biotherapy, and Healthy Food Evaluation Research Center, Sichuan University, Chengdu, 610064, P.R. China.

Comprehensive Analysis Center, ISIR, Osaka University, Mihogaoka, Ibaraki, 567-0047, Japan.

出版信息

Chemistry. 2019 Sep 25;25(54):12526-12537. doi: 10.1002/chem.201902676. Epub 2019 Aug 28.

Abstract

Three chiral bicyclic pillar[5]arene derivatives termed as molecular universal joints (MUJs), were synthesized and separated enantiomerically. These MUJs showed temperature-driven chirality switching in certain solvents. Herein, it is demonstrated that temperature-driven chirality switching could also be realized by mixing two miscible organic solvents, in each of which chirality inversion is not accomplishable. Additionally, solvent mixing drastically varied the inversion temperature of the MUJs, for example, from far below zero to room temperature. Moreover, the temperature-driven S /R to R /S chirality switching direction could be reversed by the solvent mixing and it was critically controlled by the mixing ratios of the two solvents. These observations allowed precise manipulation of the chirality switching behavior of the MUJs. Such a chirality switching was ascribed to the influences of solvent and temperature on the in-out equilibrium of the side rings, which is delicately controlled by several processes, including the solvation/desolvation and the inclusion/exclusion of the side rings and solvent molecules. Crucially, the solvent mixing introduced new supramolecular processes, in particular the desolvation of solvent molecules from the mixed solvent system and the solvation of the side ring by the mixed solvent, which significantly disturbed the original in-out equilibrium of MUJs and drastically switched the entropy and enthalpy changes of conformational interconversion.

摘要

三种手性双环[5]芳烃衍生物被称为分子万向节(MUJ),它们被合成并对映体分离。这些 MUJ 在某些溶剂中表现出温度驱动的手性转变。本文证明,通过混合两种混溶性有机溶剂也可以实现温度驱动的手性转变,在每种溶剂中,手性反转都不能完成。此外,溶剂混合极大地改变了 MUJ 的反转温度,例如,从远低于零到室温。此外,溶剂混合可以反转 MUJ 的 S/R 到 R/S 手性转变方向,并且可以通过两种溶剂的混合比来严格控制。这些观察结果允许对 MUJ 的手性转变行为进行精确控制。这种手性转变归因于溶剂和温度对手性侧环内外平衡的影响,这是通过包括溶剂化/去溶剂化、侧环和溶剂分子的包含/排除在内的几个过程来精细控制的。关键是,溶剂混合引入了新的超分子过程,特别是从混合溶剂体系中去溶剂化溶剂分子以及混合溶剂对侧环的溶剂化,这显著扰乱了 MUJ 的原始内外平衡,并极大地改变了构象转化的熵和焓变化。

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