4.8 Article

Biocatalytic trifluoromethylation of unprotected phenols

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms13323

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资金

  1. European Commission by Marie Curie Actions-Intra-European Fellowship (IEF) in project 'BIOCASCADE'
  2. Austrian BMWFJ through Austrian FFG-COMET-Funding Program
  3. Austrian BMVIT through Austrian FFG-COMET-Funding Program
  4. Austrian SFG through Austrian FFG-COMET-Funding Program
  5. Austrian Standortagentur Tirol through Austrian FFG-COMET-Funding Program
  6. Austrian ZIT through Austrian FFG-COMET-Funding Program
  7. NAWI Graz
  8. COST Action Systems Biocatalysis [CM1303]
  9. Austrian Science Fund (FWF) [J3292]
  10. Austrian Science Fund (FWF) [J3292] Funding Source: Austrian Science Fund (FWF)

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Organofluorine compounds have become important building blocks for a broad range of advanced materials, polymers, agrochemicals, and increasingly for pharmaceuticals. Despite tremendous progress within the area of fluorination chemistry, methods for the direct introduction of fluoroalkyl-groups into organic molecules without prefunctionalization are still highly desired. Here we present a concept for the introduction of the trifluoromethyl group into unprotected phenols by employing a biocatalyst (laccase), tBuOOH, and either the Langlois' reagent or Baran's zinc sulfinate. The method relies on the recombination of two radical species, namely, the phenol radical cation generated directly by the laccase and the CF3-radical. Various functional groups such as ketone, ester, aldehyde, ether and nitrile are tolerated. This laccase-catalysed trifluoromethylation proceeds under mild conditions and allows accessing trifluoromethyl-substituted phenols that were not available by classical methods.

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