4.8 Article

Gold and Silver-Catalyzed Reductive Amination of Aromatic Carboxylic Acids to Benzylic Amines

Journal

ACS CATALYSIS
Volume 11, Issue 13, Pages 7672-7684

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.1c01693

Keywords

reductive amination; gold; silver; benzylic amines; aromatic carboxylic acids; heterogeneous catalysis

Funding

  1. FWO
  2. KU Leuven
  3. European Research Council (ERC) [815128 REALNANO, 725686 DeliCAT]
  4. University of Antwerp Research fund (BOF)
  5. Royal Thai Government Scholarship
  6. Netherlands Organization for Scientific Research (NWO)

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A heterogeneous catalytic system was developed for the reductive amination of benzoic acid and its derivatives, using minimal noble metal catalysts and simple reactants, achieving up to 92% yield of benzylamine. The catalysts are bifunctional, with the support catalyzing dehydration reactions and the metal-support interface promoting hydrogenation reactions.
The reductive amination of benzoic acid and its derivatives would be an effective addition to current synthesis methods for benzylamine. However, with current technology it is very difficult to keep the aromaticity intact when starting from benzoic acid, and salt wastes are often generated in the process. Here, we report a heterogeneous catalytic system for such a reductive amination, requiring solely H-2 and NH3 as the reactants. The Ag/TiO2 or Au/TiO2 catalysts can be used multiple times, and very little noble metal is required, only 0.025 mol % Au. The catalysts are bifunctional: the support catalyzes the dehydration of both the ammonium carboxylate to the amide and of the amide to the nitrile, while the sites at the metal-support interface promote the hydrogenation of the in situ generated nitrile. Yields of up to 92% benzylamine were obtained.

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