The Journal of Organic Chemistry · 2003 · 38 citations · 9 references
EngineeringHeterocyclicAlkene MetathesisN-tosyliodoaziridine DerivativesOrganic ChemistryOrganometallic CatalysisChemistryHeterocycle ChemistryIodine Atom TransferTerminal CarbonEnantioselective SynthesisBiomolecular Engineering
Treatment of N-tosyliodoaziridine derivatives with Et(3)B efficiently produces various azahomoallyl radical (2-akenylamidyl radical) species which give oxygen-functionalized pyrrolidine derivatives through iodine atom transfer [3 + 2] cycloaddition with electron-rich alkenes such as enol ethers and ketene acetal. The present cycloaddition reaction proceeds regioselectively via C-N bond cleavage of an aziridinylalkyl radical intermediate and addition of the resulting azahomoallyl radicals to the terminal carbon of an alkene. The reaction of alkenes with the cyclohexenylamidyl radical generated from an optically active bicyclic iodoaziridine [(1S,2S,6S)-2-iodo-7-(p-toluenesulfonyl)-7-azabicyclo[4.1.0]heptane, 94% ee] also proceeds to give optically active octahydroindole derivatives (84-93% ee).
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Mn(salen)-catalyzed enantioselective CH amination
Yoshinori Kohmura, Tsutomu Katsuki · Tetrahedron Letters · 2001 · 169 citations
Hans Ullrich Siehl, Frank Peter Kaufmann, Kenzi Hori · Journal of the American Chemical Society · 1992 · 78 citations
Engineering, Altmetric Attention Score, Organic Chemistry +16