Catalytic asymmetric carbon-carbon bond formation via allylic alkylations with organolithium compounds.
Nat Chem
; 3(5): 377-81, 2011 May.
Article
in En
| MEDLINE
| ID: mdl-21505496
Carbon-carbon bond formation is the basis for the biogenesis of nature's essential molecules. Consequently, it lies at the heart of the chemical sciences. Chiral catalysts have been developed for asymmetric C-C bond formation to yield single enantiomers from several organometallic reagents. Remarkably, for extremely reactive organolithium compounds, which are among the most broadly used reagents in chemical synthesis, a general catalytic methodology for enantioselective C-C formation has proven elusive, until now. Here, we report a copper-based chiral catalytic system that allows carbon-carbon bond formation via allylic alkylation with alkyllithium reagents, with extremely high enantioselectivities and able to tolerate several functional groups. We have found that both the solvent used and the structure of the active chiral catalyst are the most critical factors in achieving successful asymmetric catalysis with alkyllithium reagents. The active form of the chiral catalyst has been identified through spectroscopic studies as a diphosphine copper monoalkyl species.
Full text:
1
Database:
MEDLINE
Main subject:
Organometallic Compounds
/
Carbon
/
Lithium Compounds
Type of study:
Prognostic_studies
Language:
En
Year:
2011
Type:
Article