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C,C- and C,N-Chelated Organocopper Compounds. | LitMetric

C,C- and C,N-Chelated Organocopper Compounds.

Molecules

Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry, Peking University, Beijing 100871, China.

Published: September 2021

AI Article Synopsis

  • Copper-catalyzed reactions and organocopper compounds play a crucial role in organic synthesis, emphasizing the need for understanding their reaction mechanisms and structural characteristics.
  • Bidentate ligands, particularly C,N- and C,C-types, provide better stability for unstable organocopper intermediates compared to mono-carbonic ligands.
  • The study highlights the unique structure-reactivity relationships of certain organocopper compounds, including their ability to form various cyclic and aggregate structures through different linking modes.

Article Abstract

Copper-catalyzed and organocopper-involved reactions are of great significance in organic synthesis. To have a deep understanding of the reaction mechanisms, the structural characterizations of organocopper intermediates become indispensable. Meanwhile, the structure-function relationship of organocopper compounds could advance the rational design and development of new Cu-based reactions and organocopper reagents. Compared to the mono-carbonic ligand, the C,N- and C,C-bidentate ligands better stabilize unstable organocopper compounds. Bidentate ligands can chelate to the same copper atom via -mode, forming a mono-cupra-cyclic compounds with at least one acute C-Cu-C angle. When the bidentate ligands bind to two copper atoms via -mode at each coordinating site, the bimetallic macrocyclic compounds will form nearly linear C-Cu-C angles. The anionic coordinating sites of the bidentate ligand can also bridge two metals via -mode, forming organocopper aggregates with Cu-Cu interactions and organocuprates with contact ion pair structures. The reaction chemistry of some selected organocopper compounds is highlighted, showing their unique structure-reactivity relationships.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8510249PMC
http://dx.doi.org/10.3390/molecules26195806DOI Listing

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