Advanced Synthesis & Catalysis · 2018 · 159 citations · 85 references
Chemical EngineeringFriedländer Quinoline SynthesisEngineeringNatural SciencesDiversity-oriented SynthesisInexpensive Catalytic SystemCatalytic SynthesisOrganic ChemistryOrganometallic CatalysisCatalysisMolecular CatalysisChemistryPrimary AlcoholsAbundant Transition MetalSynthetic ChemistryBiomolecular Engineering
Abstract Herein, we report a very simple and inexpensive catalytic system based on Earth's abundant transition metal manganese and on a bench‐stable phosphine‐free NNN‐pincer ligand for an atom‐efficient α‐alkylations of ketones with primary alcohols via hydrogen‐autotransfer C−C bond formation protocol. The precatalyst could be generated in situ and could be activated by using catalytic amount of base under milder conditions. A range of ketones were efficiently diversified with a broad range of primary alcohols in good to excellent isolated yields. Remarkably, this catalyst could also be employed for the synthesis of quinoline derivatives using 2‐aminobenzyl alcohol as an alkylating agent. The later reaction is highly benign producing only hydrogen and water as byproducts. magnified image
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The Give and Take of Alcohol Activation
Andrew J. A. Watson, Jonathan M. J. Williams · Science · 2010 · 684 citations