Tetraarylphosphonium Salt-Catalyzed Synthesis of Oxazolidinones from Isocyanates and Epoxides

Preparation of a range of oxazolidinones, including enantioenriched N-aryl-substituted oxazolidinones, in which tetraarylphosphonium salts (TAPS) catalyze the [3 + 2] coupling reaction of isocyanates and epoxides effectively, is described. The key finding is a Brønsted acid/halide ion bifunctional c...

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Veröffentlicht in:Organic letters 2017-11, Vol.19 (21), p.5786-5789
Hauptverfasser: Toda, Yasunori, Gomyou, Shuto, Tanaka, Shoya, Komiyama, Yutaka, Kikuchi, Ayaka, Suga, Hiroyuki
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Sprache:eng
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Zusammenfassung:Preparation of a range of oxazolidinones, including enantioenriched N-aryl-substituted oxazolidinones, in which tetraarylphosphonium salts (TAPS) catalyze the [3 + 2] coupling reaction of isocyanates and epoxides effectively, is described. The key finding is a Brønsted acid/halide ion bifunctional catalyst that can accelerate epoxide ring opening with high regioselectivity. Mechanistic studies disclosed that the ylide generated from TAPS, along with the formation of halohydrins, plays a crucial role in the reaction with isocyanates.
ISSN:1523-7060
1523-7052
DOI:10.1021/acs.orglett.7b02722