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首页> 外文期刊>Angewandte Chemie >Catalytic Enantioselective Access to Dihydroquinoxalinones via Formal alpha-Halo Acyl Halide Synthon in One Pot
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Catalytic Enantioselective Access to Dihydroquinoxalinones via Formal alpha-Halo Acyl Halide Synthon in One Pot

机译:Catalytic Enantioselective Access to Dihydroquinoxalinones via Formal alpha-Halo Acyl Halide Synthon in One Pot

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摘要

An enantioselective one-pot catalytic strategy to dihydroquinoxalinones, featuring novel 1-phenylsulfonyl-1-cyano enantioenriched epoxides as masked alpha-halo acyl halide synthons, followed by a domino ring-opening cyclization (DROC), is documented. A popular quinine-derived urea served as the catalyst in two out of the three steps performed in the same solvent using commercially available aldehydes, (phenylsulfonyl)acetonitrile, cumyl hydroperoxide and 1,2-phenylendiamines. Medicinally relevant 3-aryl/alkyl-substituted heterocycles are isolated in generally good to high overall yield and high enantioselectivity (up to 99 % ee). A rare example of excellent reusability of an organocatalyst at higher scale, subjected to oxidative conditions, is demonstrated. Mechanistically, labile alpha-ketosulfone has been detected as the intermediate involved in the DROC process. Theoretical calculations on the key epoxidation step rationalize the observed stereocontrol, highlighting the important role played by the sulfone group.

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