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Rhodium-Catalyzed Asymmetric Addition of Organo-Boron and -Titanium Reagents to Electron-Deficient Olefins
122
Citations
55
References
2004
Year
Electron-deficient OlefinsEngineeringOrganic ChemistryChemistryRhodium-catalyzed Asymmetric AdditionChemical EngineeringAbstract Asymmetric 1,4-ArylationOrganometallic Catalysis-Titanium ReagentsDiversity-oriented SynthesisCatalysisAsymmetric CatalysisOrganoboronic AcidsEnantioselective SynthesisBiomolecular EngineeringAlkene MetathesisNatural SciencesMolecular CatalysisRhodium Catalyst
Abstract Asymmetric 1,4-arylation and -alkenylation was achieved by use of organoboronic acids or their derivatives in the presence of a rhodium catalyst coordinated with binap or its related ligands. The scope of this asymmetric addition is very broad, α,β-unsaturated ketones, esters, amides, 1-alkenylphosphonates, and 1-nitroalkenes being efficiently converted into the corresponding 1,4-addition products with over 95% enantioselectivity. The catalytic cycle of the reaction in water is proposed to involve three intermediates (aryl- or alkenyl-rhodium, (oxa-π-allyl)rhodium, and hydroxo-rhodium), as suggested by NMR studies on the rhodium intermediates. The asymmetric addition of B-aryl-9BBN and ArTi(OPr-i)3 in aprotic solvents proceeded with high enantioselectivity under mild conditions to give the corresponding metal enolates as the 1,4-addition products.
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