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Competitive Gold‐Promoted Meyer–Schuster and oxy‐Cope Rearrangements of 3‐Acyloxy‐1,5‐enynes: Selective Catalysis for the Synthesis of (+)‐(S)‐γ‐Ionone and (−)‐(2S,6 R)‐cis‐γ‐Irone
Authors:Dr. Serena Bugoni  Dr. Valentina Merlini  Dr. Alessio Porta  Dr. Sylvain Gaillard  Prof. Giuseppe Zanoni  Prof. Dr. Steven P. Nolan  Prof. Giovanni Vidari
Affiliation:1. Dipartimento di Chimica ‐ Sezione Chimica Organica, Università degli Studi di Pavia, Via Taramelli 12, 27100 Pavia (Italy);2. EaStCHEM School of Chemistry, University of St. Andrews, North Haugh, KY16 9ST St. Andrews (UK);3. Chemistry Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451 (Saudi Arabia)
Abstract:We report a simple, highly stereoselective synthesis of (+)‐(S)‐γ‐ionone and (‐)‐(2S,6R)‐cis‐γ‐irone, two characteristic and precious odorants; the latter compound is a constituent of the essential oil obtained from iris rhizomes. Of general interest in this approach are the photoisomerization of an endo trisubstituted cyclohexene double bond to an exo vinyl group and the installation of the enone side chain through a [(NHC)AuI]‐catalyzed Meyer–Schuster‐like rearrangement. This required a careful investigation of the mechanism of the gold‐catalyzed reaction and a judicious selection of reaction conditions. In fact, it was found that the Meyer–Schuster reaction may compete with the oxy‐Cope rearrangement. Gold‐based catalytic systems can promote either reaction selectively. In the present system, the mononuclear gold complex [Au(IPr)Cl], in combination with the silver salt AgSbF6 in 100:1 butan‐2‐one/H2O, proved to efficiently promote the Meyer–Schuster rearrangement of propargylic benzoates, whereas the digold catalyst [{Au(IPr)}2(μ‐OH)][BF4] in anhydrous dichloromethane selectively promoted the oxy‐Cope rearrangement of propargylic alcohols.
Keywords:fragrances  gold  homogeneous catalysis  sigmatropic rearrangement  terpenoids
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