Olefin Hydroaryloxylation Catalyzed by Pincer–Iridium Complexes

Aryl alkyl ethers, which are widely used throughout the chemical industry, are typically produced via the Williamson ether synthesis. Olefin hydroaryloxylation potentially offers a much more atom-economical alternative. Known acidic catalysts for hydroaryloxylation, however, afford very poor selecti...

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Veröffentlicht in:Journal of the American Chemical Society 2013-10, Vol.135 (40), p.15062-15070
Hauptverfasser: Haibach, Michael C, Guan, Changjian, Wang, David Y, Li, Bo, Lease, Nicholas, Steffens, Andrew M, Krogh-Jespersen, Karsten, Goldman, Alan S
Format: Artikel
Sprache:eng
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Zusammenfassung:Aryl alkyl ethers, which are widely used throughout the chemical industry, are typically produced via the Williamson ether synthesis. Olefin hydroaryloxylation potentially offers a much more atom-economical alternative. Known acidic catalysts for hydroaryloxylation, however, afford very poor selectivity. We report the organometallic-catalyzed intermolecular hydroaryloxylation of unactivated olefins by iridium “pincer” complexes. These catalysts do not operate via the hidden Brønsted acid pathway common to previously developed transition-metal-based catalysts. The reaction is proposed to proceed via olefin insertion into an iridium–alkoxide bond, followed by rate-determining C–H reductive elimination to yield the ether product. The reaction is highly chemo- and regioselective and offers a new approach to the atom-economical synthesis of industrially important ethers and, potentially, a wide range of other oxygenates.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja404566v