| Literature DB >> 30193007 |
Lucas W Souza1, Richard A Squitieri1, Christine A Dimirjian1, Blanka M Hodur1, Leslie A Nickerson1, Corinne N Penrod1, Jesus Cordova1, James C Fettinger1, Jared T Shaw1.
Abstract
We employ a single catalyst/oxidant system to enable the asymmetric syntheses of indolines, benzodihydrothiophenes, and indanes by C-H insertion of donor/donor carbenes. This methodology enables the rapid construction of densely substituted five-membered rings that form the core of many drug targets and natural products. Furthermore, oxidation of hydrazones to the corresponding diazo compounds proceeds in situ, enabling a relatively facile one- or two-pot protocol in which isolation of potentially explosive diazo alkanes is avoided. Regioselectivity studies were performed to determine the impact of sterics and electronics in donor/donor metal carbene C-H insertions to form indolines. This methodology was applied to a variety of substrates in high yield, diastereomeric, and enantiomeric ratios and to the synthesis of a patented indane estrogen receptor agonist with anti-cancer activity.Entities:
Keywords: C−H insertion; asymmetric synthesis; diastereoselectivity; enantioselectivity; rhodium carbenes
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Year: 2018 PMID: 30193007 PMCID: PMC6377237 DOI: 10.1002/anie.201809344
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336