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A Direct and General Method for the Reductive Alkylation of Tertiary Lactams/Amides: Application to the Step Economical Synthesis of Alkaloid (−)-Morusimic Acid D
50
Citations
68
References
2013
Year
Bioorganic ChemistryEngineeringOrganic ChemistryChemistryStep Economical SynthesisStereoselective SynthesisTertiary Sec-alkylaminesDiversity-oriented Synthesis-Morusimic Acid DCatalysisPharmacologyNatural Product SynthesisAsymmetric CatalysisEnantioselective SynthesisBiomolecular EngineeringReductive AlkylationNatural SciencesPiperidine AlkaloidSitu ActivationSynthetic Chemistry
Full details of the direct and general method for the reductive alkylation of tertiary lactams and amides to give tertiary sec-alkylamines are presented. This one-pot method consists of in situ activation of a lactam or an amide with Tf2O/DTBMP, addition of a Grignard reagent, and reduction of the resulting iminium intermediates. Alkyl, benzyl, and aryl Grignard reagents and several reductants or reducing conditions (LiAlH4, NaBH4, Hantzsch ester, Bu3SnH, Pd(OH)2/C, H2) could be used effectively. Reductive alkylations of substituted lactams demonstrated good to excellent 1,3-asymmetric induction to provide the corresponding di- or trisubstituted pyrrolidine/piperidine in 6:1 (LiAlH4), 11:1 (Et3SiH), and 20:1 (catalytic hydrogenation) cis/trans diastereoselectivity, respectively. The versatility of this methodology was demonstrated by its application in the concise stereoselective synthesis of piperidine alkaloid (-)-morusimic acid.
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