924660-39-9Relevant academic research and scientific papers
Rapid construction of C4-substituted phenanthridinones through palladium-catalyzed domino N-arylation/aryl-aryl coupling process
Liu, Chao,Song, Liangliang,Van Meervelt, Luc,Van der Eycken, Erik V.
, (2021/08/05)
An excellent chemo- and regioselective palladium-catalyzed cascade intermolecular N-arylation/aryl-aryl coupling process has been developed. Employing Pd(TFA)2, PCy3?HBF4, K2CO3 and 1,4-dioxane in an oil bath at 100°C for 12 h, diverse C4-substituted phenanthridinones are synthesized from o-bromobenzamides in 42-92% yield. Broad substrate scope and excellent functional group tolerance are observed. The synthetic utility of this method is illustrated by the further derivatization to prepare multiple-substituted phenanthridinones in 30-75% yield.
Ni-Catalyzed Alkene Carboacylation via Amide C-N Bond Activation
Walker, James A.,Vickerman, Kevin L.,Humke, Jenna N.,Stanley, Levi M.
, p. 10228 - 10231 (2017/08/10)
We report Ni-catalyzed formal carboacylation of o-allylbenzamides with arylboronic acid pinacol esters. The reaction is triggered by oxidative addition of an activated amide C-N bond to a Ni(0) catalyst and proceeds via alkene insertion into a Ni(II)-acyl bond. The exo-selective carboacylation reaction generates 2-benzyl-2,3-dihydro-1H-inden-1-ones in moderate to high yields (46-99%) from a variety of arylboronic acid pinacol esters and substituted o-allylbenzamides. These results show that amides are practical substrates for alkene carboacylation via amide C-N bond activation, and this approach bypasses challenges associated with alkene carboacylation triggered by C-C bond activation.
Efficient synthesis of phenanthridinone derivatives via a palladium-catalyzed coupling process
Furuta, Takumi,Kitamura, Yuki,Hashimoto, Ayano,Fujii, Satoshi,Tanaka, Kiyoshi,Kan, Toshiyuki
, p. 183 - 186 (2007/10/03)
(Chemical Equation Presented) A palladium-mediated domino reaction was developed to conveniently synthesize phenanthridinone derivatives. Phosphine ligand 1 strongly promotes the domino process, which includes aryl-aryl coupling and C-N bond formations concomitant with a deamidation reaction. The versatility and applicability to a broad range of substrates make this reaction useful for the development of bioactive derivatives.
