Chemistry - A European Journal · 2015 · 31 citations · 47 references
Room TemperatureEngineeringAcetone Mono-α-arylationNatural SciencesDiversity-oriented SynthesisAryl Methyl KetonesElectrosynthesisOrganic ChemistryOrganometallic CatalysisCatalysisChemistryAsymmetric CatalysisBiomolecular Engineering
The first examples of acetone mono-α-arylation at room temperature are described, enabled by use of a [Pd(cinnamyl)Cl]2 /JosiPhos catalyst system. (Hetero)aryl chloride, bromide, and iodide electrophiles featuring or lacking ortho-substitution, and comprising a range of functionalities (e.g., alkoxy, cyano, fluoro, trifluoromethyl, or alkenyl) and heteroaryl motifs (e.g., pyrrole, pyridine, isoquinoline, quinoline, quinaldine, (benzo)thiophene, benzothiazole, or benzodioxole) were successfully accommodated. Proof-of-principle experiments confirm that other (hetero)aryl methyl ketones can also be employed in such room temperature mono-α-arylations. The established substrate scope is the most extensive reported to date for acetone mono-α-arylation under any conditions, and more generally represents the first room temperature ketone mono-α-arylations employing a structurally diverse set of (hetero)aryl chlorides.
47
Palladium‐Catalyzed Cross‐Coupling: A Historical Contextual Perspective to the 2010 Nobel Prize
Carin C. C. Johansson Seechurn, Matthew O. Kitching, Thomas J. Colacot et al. · Angewandte Chemie International Edition · 2012 · 2.9K citations · Full text
Historical Contextual Perspective, Akira Suzuki, Chemical Engineering +13
Nicolas Marion, Oscar Navarro, Jianguo Mei et al. · Journal of the American Chemical Society · 2006 · 895 citations
Inorganic Chemistry, Chemical Engineering, Room-temperature Suzuki−miyaura +14