Inhibited Hydrolysis of 4-(N,N-Dimethylamino)aryl Imines in a Weak Acid by Supramolecular Encapsulation inside Cucurbit7uril
KJ Shi and N Vasconez and SA Corcelli and BD Smith, JOURNAL OF ORGANIC CHEMISTRY, 90, 8309-8318 (2025).
DOI: 10.1021/acs.joc.5c00774
Schiff bases are imines formed by condensing primary amines with
aldehydes (aldimines) or ketones (ketimines), and they are common
functional groups in nature. This current study prepared 10 different
aldimine and ketimine derivatives, based on the
4-(N,N-dimethylamino)aryl imine scaffold, and measured hydrolysis rate
constants at pH 6.0, where the mole fraction of protonated imine was
very high. The hydrolysis rate constants for the free protonated imines
exhibited a logarithmic correlation with the calculated electrophilicity
index (omega). Imine hydrolysis was reduced by 15-97-fold by the
presence of cucurbit7uril (CB7), which forms a protective inclusion
complex. Quantum chemical calculations and molecular dynamics
simulations of the supramolecular complex indicate that the protonated
imine guest is "clamped" inside the host cavity by a combination of
attractive van der Waals interactions with the CB7 interior and
directional N-H
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