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Keywords = 5-Nitro-2-pyridone

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25 pages, 7329 KB  
Review
Recent Progress in Nitro-Promoted Direct Functionalization of Pyridones and Quinolones
by Feiyue Hao and Nagatoshi Nishiwaki
Molecules 2020, 25(3), 673; https://doi.org/10.3390/molecules25030673 - 5 Feb 2020
Cited by 15 | Viewed by 5793
Abstract
Nitro group is one of the most important functional groups in organic syntheses because its strongly electron-withdrawing ability activates the scaffold, facilitating the reaction with nucleophilic reagents or the Diels–Alder reaction. In this review, recent progress in the nitro-promoted direct functionalization of pyridones [...] Read more.
Nitro group is one of the most important functional groups in organic syntheses because its strongly electron-withdrawing ability activates the scaffold, facilitating the reaction with nucleophilic reagents or the Diels–Alder reaction. In this review, recent progress in the nitro-promoted direct functionalization of pyridones and quinolones is highlighted to complement previous reviews. Full article
(This article belongs to the Special Issue Nitro Compounds and Their Derivatives in Organic Synthesis)
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22 pages, 1784 KB  
Review
Chemistry of Nitroquinolones and Synthetic Application to Unnatural 1-Methyl-2-quinolone Derivatives
by Nagatoshi Nishiwaki
Molecules 2010, 15(8), 5174-5195; https://doi.org/10.3390/molecules15085174 - 30 Jul 2010
Cited by 19 | Viewed by 13938
Abstract
The 1-methyl-2-quinolone (MeQone) framework is often found in alkaloids and recently attention was drawn to unnatural MeQone derivatives with the aim of finding new biologically active compounds, however, low reactivity of the MeQone framework prevents the syntheses of versatile derivatives. A nitro group [...] Read more.
The 1-methyl-2-quinolone (MeQone) framework is often found in alkaloids and recently attention was drawn to unnatural MeQone derivatives with the aim of finding new biologically active compounds, however, low reactivity of the MeQone framework prevents the syntheses of versatile derivatives. A nitro group is one of the useful activating groups for this framework that enables a concise chemical transformation. Among nitroquinolones, 1-methyl-3,6,8-trinitro-2-quinolone (TNQ) exhibits unusual reactivity favoring region-selective cine-substitutions that afford 4-substituted 1-methyl-6,8-dinitro-2-quinolones upon treatment with nucleophilic reagents. Contrary to this, 1-methyl-3,6-dinitro-2-quinolone (3,6-DNQ) does not undergo any reaction under the same conditions. The unusual reactivity of TNQ is caused by steric repulsion between the methyl group at the 1-position and the nitro group at the 8-position, which distorts the MeQone framework. As a result, the pyridone ring of TNQ loses aromaticity and acts rather as an activated nitroalkene. Indeed, the pyridone moiety of TNQ undergoes cycloaddition with electron-rich alkenes or dienes under mild conditions, whereby a new fused ring is constructed on the [c]-face of the MeQone. Consequently, TNQ can be used as a new scaffold leading to versatile unnatural MeQone derivatives. Full article
(This article belongs to the Special Issue Advances in Heterocyclic Chemistry)
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7 pages, 52 KB  
Article
Synthesis of New Potentially Bioactive Bicyclic 2-Pyridones
by Maxime D. Crozet, Pascal George, Michel P. Crozet and Patrice Vanelle
Molecules 2005, 10(10), 1318-1324; https://doi.org/10.3390/10101318 - 31 Oct 2005
Cited by 13 | Viewed by 9622
Abstract
Three convenient methods of reduction of the nitro group of 5-nitroimidazoles and 5-nitrothiazole that bear a diethylmethylene malonate group in an ortho-like position with respect to the nitro group and cyclization of the resulting amino derivatives are reported. These reactions afforded the target [...] Read more.
Three convenient methods of reduction of the nitro group of 5-nitroimidazoles and 5-nitrothiazole that bear a diethylmethylene malonate group in an ortho-like position with respect to the nitro group and cyclization of the resulting amino derivatives are reported. These reactions afforded the target bicyclic 2-pyridones in good to excellent yields. Full article
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5 pages, 62 KB  
Article
The Ring Transformation of 3-Methyl-5-nitropyrimidin-4(3H)-one
by Nagatoshi Nishiwaki, Mina Tamura, Kazushige Hori, Yasuo Tohda and Masahiro Ariga
Molecules 2003, 8(6), 500-504; https://doi.org/10.3390/80600500 - 30 Jun 2003
Cited by 4 | Viewed by 8165
Abstract
3-Methyl-5-nitropyrimidin-4(3H)-one readily reacts with carbonyl compounds to produce three kinds of ring transformations. The nitropyrimidinone behaves as the synthetic equivalent of activated diformylamine affording 3,5-difunctionalized 4-pyridones, 4,5-disubstituted pyrimidines and functionalized 4-aminopyridines. It also behaves like α-nitro-formylacetic acid to give 5,6-disubstituted 3-nitro-2-pyridones. Full article
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7 pages, 129 KB  
Article
Synthesis of 6-Nitroderivatives of Oxazolo[3,2-a]-pyridines and Their Reactions with Nucleophiles
by Alexander A. Bush and Eugene V. Babaev
Molecules 2003, 8(6), 460-466; https://doi.org/10.3390/80600460 - 30 Jun 2003
Cited by 9 | Viewed by 10101
Abstract
5-Nitro-2-pyridone can be selectively N-phenacylated, and the resulting phenacylpyridones I undergo cyclization to 6-nitrooxazolo[3,2-a]pyridinium salts II. These salts II readily react with ammonia and aliphatic amines leading to the products of pyridine ring opening - previously unknown 1-amino-2-nitro-4-(oxazole-2-yl)butadienes-1,3. Reaction of salts II with [...] Read more.
5-Nitro-2-pyridone can be selectively N-phenacylated, and the resulting phenacylpyridones I undergo cyclization to 6-nitrooxazolo[3,2-a]pyridinium salts II. These salts II readily react with ammonia and aliphatic amines leading to the products of pyridine ring opening - previously unknown 1-amino-2-nitro-4-(oxazole-2-yl)butadienes-1,3. Reaction of salts II with water lead to hydrolytic cleavage of the oxazole fragment. Full article
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