We describe using a dynamically self-assembled octa-imine cage as a molecular flask to accelerate a bimolecular Diels–Alder reaction. We investigate the cage’s binding properties using 1H NMR spectroscopic titrations, ITC experiments, and X-ray crystallography. We detect and characterize the formation of the ternary complex (Michaelis) in solution. A detailed kinetic analysis of the reaction data supports that the cage’s acceleration is provided by including the two reactants, resulting in an effective molarity (EM) of ∼40 M. Exo-selectivity and shift of the reaction’s chemical equilibrium are also encountered in the cage’s confined space. Our results mimic enzymes’ ability to bind two substrates in a polar cavity, using directional interactions, and accelerate their stereoselective reaction, with the potential for cavity engineering to enable other reactions.
Inglés
54 - Química
Química
12 p.
ACS Publications
Gobierno de España MICINN/AEI/FEDER (CEX2019-000925-S and PID2023- 149233NB-I00)
CERCA Programme/Generalitat de Catalunya
AGAUR (2021 SGR 00851)
ICIQ Foundation
Papers [1240]