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

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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.

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Li, J., Cui, Y., Lu, Y. L., Zhang, Y., Zhang, K., Gu, C., … Liu, C. S. (2023). Programmable supramolecular chirality in non-equilibrium systems affording a multistate chiroptical switch. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-40698-9

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