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Transition-Metal-Catalyzed C-H Bond Activation for the Formation of C-C Bonds in Complex Molecules

Authors :
Docherty, Jamie H.
Lister, Thomas M.
Mcarthur, Gillian
Findlay, Michael T.
Domingo-Legarda, Pablo
Kenyon, Jacob
Choudhary, Shweta
Larrosa, Igor
Docherty, Jamie H.
Lister, Thomas M.
Mcarthur, Gillian
Findlay, Michael T.
Domingo-Legarda, Pablo
Kenyon, Jacob
Choudhary, Shweta
Larrosa, Igor
Publication Year :
2023

Abstract

Site-predictable and chemoselective C-H bond functionalization reactions offer synthetically powerful strategies for the step-economic diversification of both feedstock and fine chemicals. Many transition-metal-catalyzed methods have emerged for the selective activation and functionalization of C-H bonds. However, challenges of regio- and chemoselectivity have emerged with application to highly complex molecules bearing significant functional group density and diversity. As molecular complexity increases within molecular structures the risks of catalyst intolerance and limited applicability grow with the number of functional groups and potentially Lewis basic heteroatoms. Given the abundance of C-H bonds within highly complex and already diversified molecules such as pharmaceuticals, natural products, and materials, design and selection of reaction conditions and tolerant catalysts has proved critical for successful direct functionalization. As such, innovations within transition-metal-catalyzed C-H bond functionalization for the direct formation of carbon-carbon bonds have been discovered and developed to overcome these challenges and limitations. This review highlights progress made for the direct metal-catalyzed C-C bond forming reactions including alkylation, methylation, arylation, and olefination of C-H bonds within complex targets.

Details

Database :
OAIster
Notes :
Docherty, Jamie H. and Lister, Thomas M. and Mcarthur, Gillian and Findlay, Michael T. and Domingo-Legarda, Pablo and Kenyon, Jacob and Choudhary, Shweta and Larrosa, Igor (2023) Transition-Metal-Catalyzed C-H Bond Activation for the Formation of C-C Bonds in Complex Molecules. Chemical Reviews, 123 (12). pp. 7692-7760. ISSN 0009-2665
Publication Type :
Electronic Resource
Accession number :
edsoai.on1425773357
Document Type :
Electronic Resource