A Complementary Process to Pauson–Khand-Type Annulation Reactions for the Construction of Fully Substituted Cyclopentenones
Adam B. Millham, Matthew J. Kier, Robert M. Leon, Rajdip Karmakar, Zachary D. Stempel, Glenn C. Micalizio
Abstract
Adam B. Millham, Matthew J. Kier, Robert M. Leon, Rajdip Karmakar, Zachary D. Stempel, Glenn C. Micalizio
Abstract
A complementary process to the Pauson-Khand annulation is described that is well suited to forging densely substituted/oxygenated cyclopentenone products (including fully substituted variants). The reaction is thought to proceed through a sequence of metallacycle-mediated bond-forming events that engages an internal alkyne and a β-keto ester in an annulation process that forges two C-C bonds. A variant of this annulation process has also been established that delivers deoxygenated cyclopentenones that lack the allylic tertiary alcohol.
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A complementary process to the Pauson-Khand annulation is described that is well suited to forging densely substituted/oxygenated cyclopentenone products (including fully substituted variants). The reaction is thought to proceed through a sequence of metallacycle-mediated bond-forming events that engages an internal alkyne and a β-keto ester in an annulation process that forges two C-C bonds. A variant of this annulation process has also been established that delivers deoxygenated cyclopentenones that lack the allylic tertiary alcohol.
Key concepts: Annulation, Cyclopentenone, Chemistry, Pauson–Khand reaction, Allylic rearrangement, Metallacycle, Stereochemistry, Combinatorial chemistry