197730-07-7Relevant academic research and scientific papers
Molybdenum-Catalyzed Sustainable Friedl?nder Synthesis of Quinolines
Rubio-Presa, Rubén,Suárez-Pantiga, Samuel,Pedrosa, María R.,Sanz, Roberto
supporting information, p. 2216 - 2220 (2018/06/14)
Polysubstituted quinolines have been efficiently synthesized from nitroarenes and glycols, as reducing agents, under dioxomolybdenum(VI)-catalysis. Interestingly, the waste reduction byproduct is incorporated into the final heterocycle. This method repres
Lewis acid-catalyzed borono-minisci reactions of arylboronic acids and heterocycles
Biaco, Joyce L.,Jones, Savannah L.,Barker, Timothy J.
, p. 1687 - 1697 (2016/10/12)
A Lewis acid-catalyzed Minisci reaction between arylboronic acids and heterocycles has been developed. This radical-coupling reaction was demonstrated employing several different heterocycles as well as electron-rich arylboronic acids. Quinoline substrates afforded modest regioselectivity for substitution at the 4-position under the reaction conditions, in contrast to previously reported Br?nsted acid-mediated reactions with quinoline substrates that favored substitution at the 2-position.
Catalytic arylation of a C-H bond in pyridine and related six-membered N-heteroarenes using organozinc reagents
Hyodo, Isao,Tobisu, Mamoru,Chatani, Naoto
supporting information; experimental part, p. 1357 - 1365 (2012/08/08)
Despite significant advances in the catalytic direct arylation of heteroarenes, the application of this reaction to pyridines has been met with limited success. An oxidative nucleophilic arylation strategy has been developed to overcome this problem. Pyridine, pyrazine, quinolone, and related electron-deficient N-heteroarenes can be arylated at the most electrophilic site using the developed nickel-catalyzed reaction. This protocol serves as a complementary method to catalytic direct arylation reactions. Less is more: Pyridine, pyrazine, quinoline and related electron-deficient N-heteroarenes can be arylated at the most electrophilic site using organozinc reagents through nickel catalysis. This protocol serves as a complementary method to catalytic direct arylation reactions. Copyright
Palladium-catalyzed heteroannulation with acetylenic carbinols as synthons-synthesis of quinolines and 2,3-dihydro-4(1H)-quinolones
Mahanty, Jyan S.,De, Mahuya,Das, Palas,Kundu, Nitya G.
, p. 13397 - 13418 (2007/10/03)
o-Iodoanilides 4 reacted with terminal acetylenic carbinols 5 under palladium-catalyzed conditions to yield o-substituted anilides 6. Most of the anilides 6 could be cyclized with NaOEt/EtOH to 2-arylquinolines 2. o-Iodoanilines 7 reacted with carbinols 5 leading to 8 which on palladium(II) assisted cyclisation afforded substituted quinolines 2. An excellent synthesis of the alkaloid dubamine (2n) is reported. Also, the anilides 6 on acid-catalyzed rearrangement, deprotection and cyclisation led to the 2-aryl-2, 3-dihydro-4(1H)-quinolones 16.
