TY - JOUR
T1 - Kinetic and structure-activity studies of the triazolium ion-catalysed benzoin condensation
AU - Massey, Richard
AU - Murray, Jacob
AU - Collett, Christopher John
AU - Zhu, Jiayun
AU - Smith, Andrew D.
AU - O'Donoghue, AnnMarie
PY - 2020/12/14
Y1 - 2020/12/14
N2 - Steady-state kinetic and structure-activity studies of a series of six triazolium-ion pre-catalysts 2a–2f
were investigated for the benzoin condensation under 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.
AB - Steady-state kinetic and structure-activity studies of a series of six triazolium-ion pre-catalysts 2a–2f
were investigated for the benzoin condensation under 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.
UR - http://www.rsc.org/suppdata/d0/ob/d0ob02207a/d0ob02207a1.pdf
UR - https://www.scopus.com/pages/publications/85099772244
U2 - 10.1039/D0OB02207A
DO - 10.1039/D0OB02207A
M3 - Article
SN - 1477-0520
VL - Advance article
JO - Organic & Biomolecular Chemistry
JF - Organic & Biomolecular Chemistry
ER -