Angewandte Chemie · 2018 · 15 citations · 23 references
Inorganic ChemistryTerminal AlkyneCross-coupling ReactionEngineeringAlkene MetathesisLigand TopologyCoordination ComplexOrganic ChemistryMechanistic InsightsCatalysisOrganometallic CatalysisChemistryReaction IntermediateMolecular ComplexHigh SelectivityAsymmetric CatalysisBiomolecular EngineeringRegiochemical Switching
Abstract The mechanism and selectivity of terminal alkyne coupling reactions promoted by rhodium(I) complexes of NHC‐based CNC pincer ligands have been investigated. Synthetic and kinetic experiments support E‐ and gem‐enyne formation through a common reaction sequence involving hydrometallation and rate‐determining C−C bond reductive elimination. The latter is significantly affected by the ligand topology: Employment of a macrocyclic variant enforced exclusive head‐to‐head coupling, contrasting the high selectivity for head‐to‐tail coupling observed for the corresponding acyclic pincer ligand.
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The Atom Economy—A Search for Synthetic Efficiency
BM Trost · Science · 1991 · 4.7K citations
Combinatorial Chemistry, Inorganic Chemistry, Chemical Engineering +14
Metal-mediated approach to enynes
Barry M. Trost, Chuen Chan, Gerd Rühter · Journal of the American Chemical Society · 1987 · 253 citations