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Synthesis of spirooxindoles via formal acetylene insertion into a common palladacycle intermediate.

Xavier Abel-SnapeColton E JohnsonBianca ImbriacoMark Lautens
Published in: Chemical science (2023)
A palladium-catalyzed spirocyclization reaction is reported, which is proposed to arise via insertion of an oxabicycle into a palladacycle, formed from carbocyclization and a C-H functionalization sequence. Mechanistic studies suggest the insertion is diastereoselective and a post-catalytic retro-Diels-Alder step furnishes an alkene, wherein the oxibicycle has served as an acetylene surrogate. Aryl iodides and carbamoyl chlorides were compatible as starting materials under the same reaction conditions, enabling the convergent and complementary synthesis of spirooxindoles, as well as other azacycles. These spirooxindoles allowed further transformations that were previously unaccessible.
Keyphrases
  • electron transfer
  • transition metal