Hydroxy Groups Enhance [2]Rotaxane Anion Binding Selectivity

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Abstract

We report the synthesis of two [2]rotaxanes containing an interlocked three dimensional binding cavity formed from a pyridinium bis(amide) axle component containing two phenol donors, and an isophthalamide based macrocycle. In the competitive solvent mixture 1 : 1 CDCl3 : CD3OD, one of the receptors exhibits a much higher selectivity preference for chloride than an analogous rotaxane without the hydroxy groups. X-ray crystal structures reveal the chloride anion guest encapsulated within the interlocked binding cavity, though not all of the hydrogen bond donors are utilised. Computational semi-empirical simulations indicate that secondary intermolecular interactions occur between the axle hydroxy hydrogen bond donors and the [2]rotaxane macrocycle components, contributing to a more preorganised binding pocket, which may be responsible for the observed enhanced selectivity.

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Goodwin, R. J., Docker, A., MacDermott-Opeskin, H. I., Aitken, H. M., O’Mara, M. L., Beer, P. D., & White, N. G. (2022). Hydroxy Groups Enhance [2]Rotaxane Anion Binding Selectivity. Chemistry - A European Journal, 28(28). https://doi.org/10.1002/chem.202200389

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