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非平衡系统中可实现多态手性光开关的可编程超分子手性

Programmable supramolecular chirality in non-equilibrium systems affording a multistate chiroptical switch.

作者信息

Li Jingjing, Cui Yihan, Lu Yi-Lin, Zhang Yunfei, Zhang Kaihuang, Gu Chaonan, Wang Kaifang, Liang Yujia, Liu Chun-Sen

机构信息

School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou, 450001, China.

College of New Energy, Zhengzhou University of Light Industry, Zhengzhou, 450002, China.

出版信息

Nat Commun. 2023 Aug 18;14(1):5030. doi: 10.1038/s41467-023-40698-9.

Abstract

The dynamic regulation of supramolecular chirality in non-equilibrium systems can provide valuable insights into molecular self-assembly in living systems. Herein, we demonstrate the use of chemical fuels for regulating self-assembly pathway, which thereby controls the supramolecular chirality of assembly in non-equilibrium systems. Depending on the nature of different fuel acids, the system shows pathway-dependent non-equilibrium self-assembly, resulting in either dynamic self-assembly with transient supramolecular chirality or kinetically trapped self-assembly with inverse supramolecular chirality. More importantly, successive conducting of chemical-fueled process and thermal annealing process allows for the sequential programmability of the supramolecular chirality between four different chiral hydrogels, affording a new example of a multistate supramolecular chiroptical switch that can be recycled multiple times. The current finding sheds new light on the design of future supramolecular chiral materials, offering access to alternative self-assembly pathways and kinetically controlled non-equilibrium states.

摘要

非平衡系统中超分子手性的动态调控能够为理解生命系统中的分子自组装提供有价值的见解。在此,我们展示了利用化学燃料来调控自组装途径,进而控制非平衡系统中组装体的超分子手性。根据不同燃料酸的性质,该系统呈现出依赖途径的非平衡自组装,产生具有瞬态超分子手性的动态自组装或具有相反超分子手性的动力学捕获自组装。更重要的是,相继进行化学燃料驱动过程和热退火过程,能够实现四种不同手性水凝胶之间超分子手性的顺序可编程性,提供了一种可多次循环的多态超分子手性光开关的新范例。当前的发现为未来超分子手性材料的设计提供了新的思路,为获得替代的自组装途径和动力学控制的非平衡态提供了可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a02/10439165/3806efe7b211/41467_2023_40698_Fig1_HTML.jpg

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