The Journal of Organic Chemistry · 2005 · 63 citations · 9 references
Pure AlcoholsEngineeringStereoselective FormationOrganic ChemistryCarbon−carbon BondsGeneral Asymmetric SynthesisChemistryIndole Alcohol SubstratesStereoselective SynthesisAsymmetric CatalysisSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
A general asymmetric synthesis of substituted cycloalkyl[b]indoles has been accomplished. The key features of this approach are (1) the utilization of a Japp-Klingemann condensation/Fischer cyclization to prepare cycloalkyl[b]indolones, (2) the asymmetric borane reduction of these heterocyclic ketones with (S)-OAB to obtain enantiomerically pure alcohols, and (3) the stereoselective S(N)2-displacement of these indole alcohol substrates with a carbon nucleophile under Mitsunobu conditions to set the C1 or C3 tertiary carbon stereocenter. The use of trimethylphosphine (PMe3) and bis(2,2,2-trichloroethyl) azodicarboxylate (TCEAD) was found to have an effect on the Mitsunobu dehydrative alkylation.
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David J. Mathre, Andrew S. Thompson, Alan W. Douglas et al. · The Journal of Organic Chemistry · 1993 · 209 citations