Logo image
A Surprising Mechanistic “Switch” in Lewis Acid Activation: A Bifunctional, Asymmetric Approach to α-Hydroxy Acid Derivatives
Journal article   Open access

A Surprising Mechanistic “Switch” in Lewis Acid Activation: A Bifunctional, Asymmetric Approach to α-Hydroxy Acid Derivatives

Ciby J. Abraham, Daniel H. Paull, Tefsit Bekele, Michael T. Scerba, Travis Dudding and Thomas Lectka
Journal of the American Chemical Society, Vol.130(50), pp.17085-17094
12-17-2008
PMCID: PMC2651146
PMID: 19053448

Abstract

We report a detailed synthetic and mechanistic study of an unusual bifunctional, sequential hetero-Diels−Alder/ring-opening reaction in which chiral, metal complexed ketene enolates react with o-quinones to afford highly enantioenriched, α-hydroxylated carbonyl derivatives in excellent yield. A number of Lewis acids were screened in tandem with cinchona alkaloid derivatives; surprisingly, trans-(Ph3P)2PdCl2 was found to afford the most dramatic increase in yield and rate of reaction. A series of Lewis acid binding motifs were explored through molecular modeling, as well as IR, UV, and NMR spectroscopy. Our observations document a fundamental mechanistic “switch”, namely the formation of a tandem Lewis base/Lewis acid activated metal enolate in preference to a metal-coordinated quinone species (as observed in other reactions of o-quinone derivatives). This new method was applied to the syntheses of several pharmaceutical targets, each of which was obtained in high yield and enantioselectivity.
url
https://doi.org/10.1021/ja806818aView
Published (Version of record) Open

Related links

Metrics

Details

Logo image