Mechanistic insights into the triazolylidene-catalysed Stetter and benzoin reactions: Role of the N-aryl substituent

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Abstract

The in situ observation, isolation and reversible formation of intermediate 3-(hydroxybenzyl)azolium salts derived from NHC addition to a range of substituted benzaldehydes is probed. Equilibrium constants for the formation of these 3-(hydroxybenzyl)azolium salts, as well as rate constants of hydrogen–deuterium exchange (k ex) at C(α) of these intermediates for a range of N-aryl triazolinylidenes is reported. These combined studies give insight into the preference of N-pentafluorophenyl NHCs to participate in benzoin and Stetter reaction processes. © 2013 The Royal Society of Chemistry.

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Collett, C. J., Massey, R. S., Maguire, O. R., Batsanov, A. S., O’donoghue, A. M. C., & Smith, A. D. (2013). Mechanistic insights into the triazolylidene-catalysed Stetter and benzoin reactions: Role of the N-aryl substituent. Chemical Science, 4(4), 1514–1522. https://doi.org/10.1039/c2sc22137c

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