Publication | Closed Access
New Highly Asymmetric Henry Reaction Catalyzed by Cu<sup>II</sup> and a <i>C</i><sub>1</sub>‐Symmetric Aminopyridine Ligand, and Its Application to the Synthesis of Miconazole
183
Citations
50
References
2008
Year
High YieldsInorganic ChemistryNovel OrganocatalystsEngineeringBiochemistryNatural SciencesAminopyridine LigandAntifungal Agent MiconazoleOrganic ChemistryOrganometallic CatalysisCatalysisChemistryHeterocycle ChemistryAsymmetric CatalysisInorganic SynthesisEnantioselective Synthesis
A new catalytic asymmetric Henry reaction has been developed that uses a C(1)-symmetric chiral aminopyridine ligand derived from camphor and picolylamine. A variety of aromatic, heteroaromatic, aliphatic, and unsaturated aldehydes react with nitromethane and other nitroalkanes in the presence of DIPEA (1.0 equiv), Cu(OAc)(2)*H(2)O (5 mol %), and an aminopyridine ligand (5 mol %) to give the expected products in high yields (up to 99 %), moderate-to-good diastereoselectivites (up to 82:18), and excellent enantioselectivities (up to 98 %). The reaction is air-tolerant and has been used in the synthesis of the antifungal agent miconazole.
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