Lewis acid enhancement by hydrogen-bond donors for asymmetric catalysis

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Abstract

Small-molecule dual hydrogen-bond (H-bond) donors such as ureas, thioureas, squaramides, and guanidinium ions enjoy widespread use as effective catalysts for promoting a variety of enantioselective reactions. However, these catalysts are only weakly acidic and therefore require highly reactive electrophilic substrates to be effective. We introduce here a mode of catalytic activity with chiral H-bond donors that enables enantioselective reactions of relatively unreactive electrophiles. Squaramides are shown to interact with silyl triflates by binding the triflate counterion to form a stable, yet highly Lewis acidic, complex. The silyl triflate-chiral squaramide combination promotes the generation of oxocarbenium intermediates from acetal substrates at low temperatures. Enantioselectivity in nucleophile additions to the cationic intermediates is then controlled through a network of noncovalent interactions between the squaramide catalyst and the oxocarbenium triflate.

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Banik, S. M., Levina, A., Hyde, A. M., & Jacobsen, E. N. (2017). Lewis acid enhancement by hydrogen-bond donors for asymmetric catalysis. Science, 358(6364), 761–764. https://doi.org/10.1126/science.aao5894

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