54774-86-6Relevant academic research and scientific papers
N - And O -arylation of pyridin-2-ones with diaryliodonium salts: Base-dependent orthogonal selectivity under metal-free conditions
Abe, Yusuke,Hanazawa, Natsumi,Katagiri, Kotone,Kuriyama, Masami,Ono, Shimpei,Onomura, Osamu,Yamamoto, Kosuke
, p. 8295 - 8300 (2020/09/09)
Metal-free N- and O-arylation reactions of pyridin-2-ones as ambident nucleophiles have been achieved with diaryliodonium salts on the basis of base-dependent chemoselectivity. In the presence of N,N-diethylaniline in fluorobenzene, pyridin-2-ones were very selectively converted to N-arylated products in high yields. On the other hand, the O-arylation reactions smoothly proceeded with the use of quinoline in chlorobenzene, leading to high yields and selectivities. In these methods, a variety of pyridin-2-ones in addition to pyridin-4-one and a set of diaryliodonium salts were accepted as suitable reaction partners.
Substituent Effects of 2-Pyridones on Selective O-Arylation with Diaryliodonium Salts: Synthesis of 2-Aryloxypyridines under Transition-Metal-Free Conditions
Li, Xiao-Hua,Ye, Ai-Hui,Liang, Cui,Mo, Dong-Liang
, p. 1699 - 1710 (2018/02/06)
An efficient transition-metal-free strategy to synthesize 2-aryloxypyridine derivatives has been developed by a selective O-arylation of 2-pyridones with diaryliodonium salts. The reaction was compatible with a series of functional groups for 2-pyridones and diaryliodonium salts such as halides, nitro, cyano, and ester groups. The substituents at the C6-position of 2-pyridones favored O-arylation products because of steric hindrance. The reaction was easily performed on a gram-scale and 6-chloro-2-pyridone was a good precursor to access various unsubstituted 2-aryloxypyridines by dehalogenation. A P2Y 1 lead compound analogue could be prepared in good yield over two steps.
Cu-catalyzed N- and O-arylation of 2-,3-, and 4-hydroxypyridines and hydroxyquinolines
Altman, Ryan A.,Buchwald, Stephen L.
, p. 643 - 646 (2008/02/03)
With use of Cu-based catalysts, 2- and 4-hydroxypyridines were N-arylated in modest to excellent yields. In the case of 2-hydroxypyridine, the use of 4,7-dimethoxy-1,10-phenanthroline, 3, expanded the scope of previous literature reports to include the use of N-containing heteroaryl halides, and 2-substituted aryl halides. In addition, by using a copper catalyst based on 2,2,6,6-tetramethylheptane-3,5-dione, 4, the first N-arylations of 4-hydroxypyridines and O-arylations of 3-hydroxypyridines with aryl bromides and iodides have been accomplished.
N-arylation of pyridin-2(1H)-ones with pentavalent organobismuth reagents under copper-free conditions
Ikegai, Kazuhiro,Nagata, Yuzo,Mukaiyama, Teruaki
, p. 761 - 767 (2008/02/01)
An efficient method for the N-arylation of pyridin-2(1H)-ones and the related heteroaromatic lactams has been established via ligand-coupling reactions using tri- or tetra-aryl organobismuth(V) reagents such as triarylbismuth dichlorides. Also, N-alkenylation of pyridin-2(1H)-one was achieved similarly by using alkenyltriarylbismuth(V) reagents.
Synthesis of N-aryl pyridin-2-ones via ligand coupling reactions using pentavalent organobismuth reagents
Ikegai, Kazuhiro,Mukaiyama, Teruaki
, p. 1496 - 1497 (2007/10/03)
An efficient method for the synthesis of N-aryl pyridin-2-ones was established by way of ligand coupling reactions using pentavalent organobismuth reagents such as triarylbismuth dichlorides. Copyright
