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Towards mild metal-catalyzed C–H bond activation

Chemical Society Reviews · 2011 · Vol. 40(9) · pp. 4740–4740
Joanna Wencel‐DelordThomas DrögeFan LiuFrank Glorius

Abstract

Functionalizing traditionally inert carbon-hydrogen bonds represents a powerful transformation in organic synthesis, providing new entries to valuable structural motifs and improving the overall synthetic efficiency. C-H bond activation, however, often necessitates harsh reaction conditions that result in functional group incompatibilities and limited substrate scope. An understanding of the reaction mechanism and rational design of experimental conditions have led to significant improvement in both selectivity and applicability. This critical review summarizes and discusses endeavours towards the development of mild C-H activation methods and wishes to trigger more research towards this goal. In addition, we examine select examples in complex natural product synthesis to demonstrate the synthetic utility of mild C-H functionalization (84 references).

Catalytic C–H Functionalization MethodsCatalytic Cross-Coupling ReactionsSynthesis and Catalytic ReactionsScope (computer science)Combinatorial chemistryCatalysisSurface modificationChemistryRational designInertSubstrate (aquarium)Reaction conditionsFunctional group

MeSH terms

Biological ProductsCarbonCatalysisHydrogenMetalsChemistry Techniques, Synthetic

Funding

  • Deutsche Forschungsgemeinschaft
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