Modulable and Highly Diastereoselective Carbometalations of Cyclopropenes
Résumé
The copper-catalyzed carbomagnesiation reaction of cyclopropenyl esters 1 leads to various substituted cyclopropanes species 3 in good yields with very high diastereoselectivities. The reaction proceeds through a syn-chelated carbomagnesiation reaction and could be extended to various cyclopropenylmethyl ester derivatives 5. The potential of this approach was illustrated by the preparation of two consecutive all-carbon quaternary stereocenters. However, the carbometalation reaction needs to be performed at temperature ranging from -35 to -20 degrees C to avoid subsequent fragmentation reaction into stereodefined ,-nonconjugated unsaturated esters 4. Alternatively, the carbocupration reaction with organocopper species could also be performed to leads to configurationally stable cyclopropyl copper species2[Cu]. Additionally, when the Lewis acid character of the copper center is decreased (i.e., RCuCNLi), the reaction proceed with an anti-selectivity. The diastereodivergent behavior of these organometallic species is of synthetic interest, since both diastereomers syn-3 and anti-3 can be obtained, at will, from the same precursor cyclopropenyl esters 1.
Mots clés
- VERSATILE BUILDING-BLOCKS
- carbometalation
- chelation
- cyclopropene
- diastereodivergence
- QUATERNARY STEREOGENIC CENTERS
- CARBONYL ALLYLATION REACTIONS
- ORGANOMAGNESIUM HALIDES
- RING STRAIN ENERGIES
- INTRAMOLECULAR CARBOLITHIATION
- GRIGNARD-REAGENTS
- ALKYLIDENECYCLOPROPANE DERIVATIVES
- C=C BONDS
- ACYCLIC SYSTEMS
