4.8 Article

Catalytic synthesis of phenols with nitrous oxide

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NATURE
卷 604, 期 7907, 页码 677-+

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NATURE PORTFOLIO
DOI: 10.1038/s41586-022-04516-4

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  1. Max-Planck-Gesellschaft
  2. Fonds der Chemischen Industrie (FCI-VCI)
  3. Swiss National Science Foundation [184406]
  4. Universidad de Oviedo-Banco Santander
  5. Max-Planck-Institut fur Kohlenforschung

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This study presents a method for inserting N2O into a Ni-C bond to synthesize valuable phenols under mild conditions. This method provides an alternative catalytic approach for the conversion of aryl halides to phenols, different from traditional strategies.
The development of catalytic chemical processes that enable the revalorization of nitrous oxide (N2O) is an attractive strategy to alleviate the environmental threat posed by its emissions(1-6). Traditionally, N2O has been considered an inert molecule, intractable for organic chemists as an oxidant or 0-atom transfer reagent, owing to the harsh conditions required for its activation (>150 degrees C, 50-200 bar)(7-11) . Here we report an insertion of N2O into a Ni-C bond under mild conditions (room temperature, 1.5-2 bar N2O), thus delivering valuable phenols and releasing benign N-2. This fundamentally distinct organometallic C-O bond-forming step differs from the current strategies based on reductive elimination and enables an alternative catalytic approach for the conversion of aryl halides to phenols. The process was rendered catalytic by means of a bipyridine-based ligands for the Ni centre. The method is robust, mild and highly selective, able to accommodate base-sensitive functionalities as well as permitting phenol synthesis from densely functionalized aryl halides. Although this protocol does not provide a solution to the mitigation of N2O emissions, it represents a reactivity blueprint for the mild revalorization of abundant N2O as an O source.

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