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σ‐Alkylpalladium Intermediates in Intramolecular Heck Reactions:Isolation and Catalytic Activity
Authors:Egle M. Beccalli Prof.  Elena Borsini  Stefano Brenna Dr.  Simona Galli Dr.  Micol Rigamonti  Gianluigi Broggini Dr.
Affiliation:1. DISMAB, Sezione di Chimica Organica “A. Marchesini”, Università di Milano, Via Venezian 21, 20133 Milano (Italy);2. Dipartimento di Scienze Chimiche e Ambientali, Università dell'Insubria, Via Valleggio 11, 22100 Como (Italy), Fax: (+39)?031‐2386449
Abstract:The isolation of σ‐alkylpalladium Heck intermediates, possible when β‐hydride elimination is inhibited, is a rather rare event. Performing intramolecular Heck reactions on N‐allyl‐2‐halobenzylamines in the presence of [Pd(PPh3)4], we isolated and characterized a series of stable bridged palladacycles containing an iodine or bromine atom on the palladium atom. Indolyl substrates were also tested for isolation of the corresponding complexes. X‐ray crystallographic analysis of one of the indolyl derivatives revealed the presence of a five‐membered palladacycle with the metal center bearing a PPh3 ligand and an iodine atom in a cis position with respect to the nitrogen atom. The stability of the σ‐alkylpalladium complexes is probably a consequence of the strong constraint resulting from the bridged junction that hampers the cisoid conformation essential for β‐hydride elimination. Subsequently, the thus obtained bridged five‐membered palladacycles were proven to be effective precatalysts in Heck reactions as well as in cross‐coupling processes such as Suzuki and Stille reactions.
Keywords:Heck reaction  homogeneous catalysis  metallacycles  palladium  X‐ray diffraction
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