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Catalytic, Asymmetric Inverse Electron Demand Hetero Diels-Alder Reactions of o-Benzoquinone Derivatives and Ketene Enolates
Journal article

Catalytic, Asymmetric Inverse Electron Demand Hetero Diels-Alder Reactions of o-Benzoquinone Derivatives and Ketene Enolates

Daniel H. Paull, Jamison Wolfer, James W. Grebinski, Anthony Weatherwax and Thomas Lectka
ChemInform, Vol.39(33), pp.no-no
08-12-2008

Abstract

cycloaddition reactions Review Organic Chemistry
We present an array of [4+2] cycloaddition reactions between ketene enolates, catalytically derived from acid chlorides and cinchona alkaloid nucleophilic catalysts in the presence of stoichiometric base, and o-benzoquinone derivatives. These cycloaddition reactions proceed with excellent stereochemical control (up to >99% ee). In fact, for both the o-benzoquinone imide and the o-benzoquinone diimide manifolds, these Diels-Alder reactions occurred with uniformly >99% ee. The wide scope of this methodology provides access to a diverse range of biologically and synthetically useful chiral products, including ?-hydroxyesters, non-natural ?-amino acids, quinoxalinones, and many others, all with remarkable, catalytic control of regio- and stereochemistry.
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