4.6 Article

Unexpected Hydrobromic Acid-Catalyzed C-C Bond-Forming Reactions and Facile Synthesis of Coumarins and Benzofurans Based on Ketene Dithioacetals

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 16, 期 45, 页码 13450-13457

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201002107

关键词

C-H activation; C-C coupling; hydrobromic acid; oxygen heterocycles; reaction mechanisms

资金

  1. NNSFC [20872015/20972029]
  2. Fundamental Research Funds for the Central Universities [NENUSTC08007/07007]

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Hydrobromic acid was found to be a unique catalyst in C-C bondforming reactions with ketene dithioacetals. Distinctly different from other acids (including Lewis and Bronsted acids), the remarkable catalytic performance of hydrobromic acid in catalytic amounts was observed in the acid-catalyzed reactions of readily available functionalized ketene dithioacetals 1 with various electrophiles. Under the catalysis of 0.1 equivalents of hydrobromic acid, the reaction of 1 with carbonyl compounds 2a-l gave polyfunctionalized penta-1,4-dienes 3 or conjugated dienes 4 in good to excellent yields. The reaction tolerated a broad range of substituents on both the ketene dithioacetals 1 and the carbonyl compounds 2. Application of this effi-cient C-C bond-forming method generated coumarins 5 and benzofurans 7 under mild, metal-free conditions by hydrobromic acid-catalyzed reactions of 1 with salicylaldehydes 2m-o and pquinones 6a-d, respectively. A new reactive species, a sulfur-stabilized carbonium ylide, formed depending on the nature of the counterion, and this was proposed as the key intermediate in the unique catalysis of hydrobromic acid.

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