4.8 Article

Direct observation of two-electron Ag(I)/Ag(III) redox cycles in coupling catalysis

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NATURE COMMUNICATIONS
卷 5, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms5373

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资金

  1. European Research Council [ERC-2011-StG-277801]
  2. Spanish MINECO [CTQ2012-37420-C02-01/BQU, CTQ2012-32436, CSD2010-00065, INP-2011-0059-PCT-420000-ACT1]
  3. Catalan DIUE of the Generalitat de Catalunya [2009SGR637]
  4. ICREA-Academia

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Silver is extensively used in homogeneous catalysis for organic synthesis owing to its Lewis acidity, and as a powerful one-electron oxidant. However, two-electron redox catalytic cycles, which are most common in noble metal organometallic reactivity, have never been considered. Here we show that a Ag(I)/Ag(III) catalytic cycle is operative in model C-O and C-C cross-coupling reactions. An aryl-Ag(III) species is unequivocally identified as an intermediate in the catalytic cycle and we provide direct evidence of aryl halide oxidative addition and C-N, C-O, C-S, C-C and C-halide bond-forming reductive elimination steps at mono-metallic silver centres. We anticipate our study as the starting point for expanding Ag(I)/Ag( III) redox chemistry into new methodologies for organic synthesis, resembling well-known copper or palladium cross-coupling catalysis. Furthermore, findings described herein provide unique fundamental mechanistic understanding on Ag-catalysed cross-coupling reactions and dismiss the generally accepted conception that silver redox chemistry can only arise from one-electron processes.

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