Back to Search Start Over

A Self‐Assembled Cage with Endohedral Acid Groups both Catalyzes Substitution Reactions and Controls Their Molecularity

Authors :
Courtney Ngai
Paul M. Bogie
Richard J. Hooley
Tabitha F. Miller
Lauren R. Holloway
Divine K. Grewal
Source :
Chemistry – A European Journal. 25:10232-10238
Publication Year :
2019
Publisher :
Wiley, 2019.

Abstract

A self-assembled Fe4 L6 cage complex internally decorated with acid functions is capable of accelerating the thioetherification of activated alcohols, ethers and amines by up to 1000-fold. No product inhibition is seen, and effective supramolecular catalysis can occur with as little as 5 % cage. The substrates are bound in the host with up to micromolar affinities, whereas the products show binding that is an order of magnitude weaker. Most importantly, the cage host alters the molecularity of the reaction: whereas the reaction catalyzed by simple acids is a unimolecular, SN 1-type substitution process, the rate of the host-mediated process is dependent on the concentration of nucleophile. The molecularity of the cage-catalyzed reaction is substrate-dependent, and can be up to bimolecular. In addition, the catalysis can be prevented by a large excess of nucleophile, where substrate inhibition dominates, and the use of tritylated anilines as substrates causes a negative feedback loop, whereby the liberated product destroys the catalyst and stops the reaction.

Details

ISSN :
15213765 and 09476539
Volume :
25
Database :
OpenAIRE
Journal :
Chemistry – A European Journal
Accession number :
edsair.doi.dedup.....de78097c2ac09d04304f632b09a6de52
Full Text :
https://doi.org/10.1002/chem.201902049