TY - JOUR
T1 - General and selective ruthenium-catalyzed hydrogenation of primary amides to primary amines under mild conditions
AU - Kuloor, Chakreshwara
AU - Goyal, Vishakha
AU - Ma, Zhuang
AU - Poovan, Fairoosa
AU - Peña Fuentes, Dilver
AU - Baumann, Wolfgang
AU - Zhao, Jun
AU - Zbořil, Radek
AU - Beller, Mathias
AU - Jagadeesh, Rajenahally V.
N1 - We thank the German Research Foundation (DFG project numbers 670389-NFDI2/1 and 447724917) and the State of Mecklenburg-Vorpommern for financial and general support. We gratefully acknowledge the financial support from the European Union under the REFRESH-Research Excellence for Region Sustainability and High-tech Industries project number CZ.10.03.01/00/22_003/0000048 via the Operational Program Just Transition. Vishakha Goyal acknowledges the financial support of the European Union under the “MSCA Fellowships CZ at VSB-TUO 2.0” project, reg. nr. CZ.02.01.01/00/22_010/0008714 within the Johannes Amos Comenius Operational Program. We are thankful to the analytical team of the Leibniz-Institut für Katalyse e.V. for their excellent service.
Publisher Copyright:
© The Author(s) 2026.
PY - 2026/3/5
Y1 - 2026/3/5
N2 - The catalytic hydrogenation of amides continues to be one of the most difficult reductive transformations in organic synthesis. Despite significant efforts in past decades, there is no general protocol reported allowing the synthesis of various primary amines from the corresponding primary amides using molecular hydrogen. To perform this challenging reaction, here we report a specific homogeneous ruthenium catalyst based on the methoxy-substituted triphos ligand (Triphos(p-anisole)). In the presence of this Ru-catalyst system, industrially relevant, functionalized, and structurally diverse aromatic, heterocyclic and aliphatic primary amides including fatty amides have been selectively hydrogenated to produce the corresponding primary amines under comparably mild conditions (typically 115 °C and 10 bar H2). The resulting amines are valuable compounds with diverse applications in chemistry, medicine and biology as well as in materials and energy technologies.
AB - The catalytic hydrogenation of amides continues to be one of the most difficult reductive transformations in organic synthesis. Despite significant efforts in past decades, there is no general protocol reported allowing the synthesis of various primary amines from the corresponding primary amides using molecular hydrogen. To perform this challenging reaction, here we report a specific homogeneous ruthenium catalyst based on the methoxy-substituted triphos ligand (Triphos(p-anisole)). In the presence of this Ru-catalyst system, industrially relevant, functionalized, and structurally diverse aromatic, heterocyclic and aliphatic primary amides including fatty amides have been selectively hydrogenated to produce the corresponding primary amines under comparably mild conditions (typically 115 °C and 10 bar H2). The resulting amines are valuable compounds with diverse applications in chemistry, medicine and biology as well as in materials and energy technologies.
UR - https://www.scopus.com/pages/publications/105035860462
U2 - 10.1038/s41467-026-69794-2
DO - 10.1038/s41467-026-69794-2
M3 - Journal article
C2 - 41786725
AN - SCOPUS:105035860462
SN - 2041-1723
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 3525
ER -