Highly efficient, tripodal ion-pair receptors for switching selectivity between acetates and sulfates using solid–liquid and liquid–liquid extractions

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Abstract

A tripodal, squaramide-based ion-pair receptor 1 was synthesized in a modular fashion, and1H NMR and UV-vis studies revealed its ability to interact more efficiently with anions with the assistance of cations. The reference tripodal anion receptor 2, lacking a crown ether unit, was found to lose the enhancement in anion binding induced by presence of cations. Besides the ability to bind anions in enhanced manner by the “single armed” ion-pair receptor 3, the lack of multiple and prearranged binding sites resulted in its much lower affinity towards anions than in the case of tripodal receptors. Unlike with receptors 2 or 3, the high affinity of 1 towards salts opens up the possibility of extracting extremely hydrophilic sulfate anions from aqueous to organic phase. The disparity in receptor 1 binding modes towards monovalent anions and divalent sulfates assures its selectivity towards sulfates over other lipophilic salts upon liquid–liquid extraction (LLE) and enables the Hofmeister bias to be overcome. By changing the extraction conditions from LLE to SLE (solid–liquid extraction), a switch of selectivity from sulfates to acetates was achieved. X-ray measurements support the ability of anion binding by cooperation of the arms of receptor 1 together with simultaneous binding of cations.

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Zaleskaya, M., Dobrzycki, Ł., & Romański, J. (2020). Highly efficient, tripodal ion-pair receptors for switching selectivity between acetates and sulfates using solid–liquid and liquid–liquid extractions. International Journal of Molecular Sciences, 21(24), 1–19. https://doi.org/10.3390/ijms21249465

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