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A chiroptical switch based on supramolecular chirality transfer through alkyl chain entanglement and dynamic covalent bonding

机译:通过烷基链缠结和动态共价键超分子手性转移的手性开关

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摘要

Chirality transfer is an interesting phenomenon in Nature, which represents an important step to understand the evolution of chiral bias and the amplification of the chirality. In this paper, we report the chirality transfer via the entanglement of the alkyl chains between chiral gelator molecules and achiral amphiphilic Schiff base. We have found that although ah achiral Schiff base amphiphile could not form organogels in any kind of organic solvents, it formed co-organogels when mixed with a chiral gelator molecule. Interestingly, the chirality of the gelator molecules was transferred to the Schiff base chromophore in the mixed co-gels and there was a maximum mixing ratio for the chirality transfer. Furthermore, the supramolecular chirality was also produced based on a dynamic covalent chemistry of an imine formed by the reaction between an aldehyde and an amine. Such a covalent bond of imine was formed reversibly depending on the pH variation. When the covalent bond was formed the chirality transfer occurred, when it was destroyed, the transfer stopped. Thus, a supramolecular chiroptical switch is obtained based on supramolecular chirality transfer and dynamic covalent chemistry.
机译:手性转移是自然界中一个有趣的现象,它代表了理解手性偏向的演变和手性放大的重要一步。在本文中,我们通过手性凝胶分子与非手性两亲席夫碱之间的烷基链缠结报告了手性转移。我们已经发现,尽管非手性席夫碱两亲物不能在任何种类的有机溶剂中形成有机凝胶,但当与手性凝胶剂分子混合时,它会形成共有机凝胶。有趣的是,凝胶剂分子的手性被转移到混合共凝胶中的席夫碱生色团中,并且手性转移的混合比最大。此外,还基于由醛和胺之间的反应形成的亚胺的动态共价化学产生超分子手性。这种亚胺的共价键根据pH变化可逆地形成。当形成共价键时,发生手性转移,当其被破坏时,转移停止。因此,基于超分子手性转移和动态共价化学获得超分子手性开关。

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