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General and selective synthesis of primary amines using Ni-based homogeneous catalysts

The development of base metal catalysts for industrially relevant amination and hydrogenation reactions by applying abundant and atom economical reagents continues to be important for the cost-effective and sustainable synthesis of amines which represent highly essential chemicals. In particular, th...

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Autores principales: Murugesan, Kathiravan, Wei, Zhihong, Chandrashekhar, Vishwas G., Jiao, Haijun, Beller, Matthias, Jagadeesh, Rajenahally V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152594/
https://www.ncbi.nlm.nih.gov/pubmed/34122891
http://dx.doi.org/10.1039/d0sc01084g
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author Murugesan, Kathiravan
Wei, Zhihong
Chandrashekhar, Vishwas G.
Jiao, Haijun
Beller, Matthias
Jagadeesh, Rajenahally V.
author_facet Murugesan, Kathiravan
Wei, Zhihong
Chandrashekhar, Vishwas G.
Jiao, Haijun
Beller, Matthias
Jagadeesh, Rajenahally V.
author_sort Murugesan, Kathiravan
collection PubMed
description The development of base metal catalysts for industrially relevant amination and hydrogenation reactions by applying abundant and atom economical reagents continues to be important for the cost-effective and sustainable synthesis of amines which represent highly essential chemicals. In particular, the synthesis of primary amines is of central importance because these compounds serve as key precursors and central intermediates to produce value-added fine and bulk chemicals as well as pharmaceuticals, agrochemicals and materials. Here we report a Ni-triphos complex as the first Ni-based homogeneous catalyst for both reductive amination of carbonyl compounds with ammonia and hydrogenation of nitroarenes to prepare all kinds of primary amines. Remarkably, this Ni-complex enabled the synthesis of functionalized and structurally diverse benzylic, heterocyclic and aliphatic linear and branched primary amines as well as aromatic primary amines starting from inexpensive and easily accessible carbonyl compounds (aldehydes and ketones) and nitroarenes using ammonia and molecular hydrogen. This Ni-catalyzed reductive amination methodology has been applied for the amination of more complex pharmaceuticals and steroid derivatives. Detailed DFT computations have been performed for the Ni-triphos based reductive amination reaction, and they revealed that the overall reaction has an inner-sphere mechanism with H(2) metathesis as the rate-determining step.
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spelling pubmed-81525942021-06-11 General and selective synthesis of primary amines using Ni-based homogeneous catalysts Murugesan, Kathiravan Wei, Zhihong Chandrashekhar, Vishwas G. Jiao, Haijun Beller, Matthias Jagadeesh, Rajenahally V. Chem Sci Chemistry The development of base metal catalysts for industrially relevant amination and hydrogenation reactions by applying abundant and atom economical reagents continues to be important for the cost-effective and sustainable synthesis of amines which represent highly essential chemicals. In particular, the synthesis of primary amines is of central importance because these compounds serve as key precursors and central intermediates to produce value-added fine and bulk chemicals as well as pharmaceuticals, agrochemicals and materials. Here we report a Ni-triphos complex as the first Ni-based homogeneous catalyst for both reductive amination of carbonyl compounds with ammonia and hydrogenation of nitroarenes to prepare all kinds of primary amines. Remarkably, this Ni-complex enabled the synthesis of functionalized and structurally diverse benzylic, heterocyclic and aliphatic linear and branched primary amines as well as aromatic primary amines starting from inexpensive and easily accessible carbonyl compounds (aldehydes and ketones) and nitroarenes using ammonia and molecular hydrogen. This Ni-catalyzed reductive amination methodology has been applied for the amination of more complex pharmaceuticals and steroid derivatives. Detailed DFT computations have been performed for the Ni-triphos based reductive amination reaction, and they revealed that the overall reaction has an inner-sphere mechanism with H(2) metathesis as the rate-determining step. The Royal Society of Chemistry 2020-03-25 /pmc/articles/PMC8152594/ /pubmed/34122891 http://dx.doi.org/10.1039/d0sc01084g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Murugesan, Kathiravan
Wei, Zhihong
Chandrashekhar, Vishwas G.
Jiao, Haijun
Beller, Matthias
Jagadeesh, Rajenahally V.
General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title_full General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title_fullStr General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title_full_unstemmed General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title_short General and selective synthesis of primary amines using Ni-based homogeneous catalysts
title_sort general and selective synthesis of primary amines using ni-based homogeneous catalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8152594/
https://www.ncbi.nlm.nih.gov/pubmed/34122891
http://dx.doi.org/10.1039/d0sc01084g
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