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Kinetic and structure–activity studies of the triazolium ion-catalysed benzoin condensation

Massey, Richard S.; Murray, Jacob; Collett, Christopher J.; Zhu, Jiayun; Smith, Andrew D.; O'Donoghue, AnnMarie C.

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Authors

Richard S. Massey

Jacob Murray

Christopher J. Collett

Jiayun Zhu

Andrew D. Smith



Abstract

Steady-state kinetic and structure–activity studies of a series of six triazolium-ion pre-catalysts 2a–2f were investigated for the benzoin condensation. These data provide quantitative insight into the role of triazolium N-aryl substitution under synthetically relevant catalytic conditions in a polar solvent environment. Kinetic behaviour was significantly different to that previously reported for a related thiazolium-ion pre-catalyst 1, with the observed levelling of initial rate constants to νmax at high aldehyde concentrations for all triazolium catalysts. Values for νmax for 2a–2f increase with electron withdrawing N-aryl substituents, in agreement with reported optimal synthetic outcomes under catalytic conditions, and vary by 75-fold across the series. The levelling of rate constants supports a change in rate-limiting step and evidence supports the assignment of the Breslow-intermediate forming step to the plateau region. Correlation of νmax reaction data yielded a positive Hammett ρ-value (ρ = +1.66) supporting the build up of electron density adjacent to the triazolium N-Ar in the rate-limiting step favoured by electron withdrawing N-aryl substituents. At lower concentrations of aldehyde, both Breslow-intermediate and benzoin formation are partially rate-limiting.

Citation

Massey, R. S., Murray, J., Collett, C. J., Zhu, J., Smith, A. D., & O'Donoghue, A. C. (2021). Kinetic and structure–activity studies of the triazolium ion-catalysed benzoin condensation. Organic and Biomolecular Chemistry, 19(2), 387-393. https://doi.org/10.1039/d0ob02207a

Journal Article Type Article
Acceptance Date Dec 11, 2020
Online Publication Date Dec 14, 2020
Publication Date 2021
Deposit Date Jan 6, 2021
Publicly Available Date Jan 6, 2020
Journal Organic and Biomolecular Chemistry
Print ISSN 1477-0520
Electronic ISSN 1477-0539
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 19
Issue 2
Pages 387-393
DOI https://doi.org/10.1039/d0ob02207a

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