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Cyclization, reductive, aromatic nitro

Cyclization, reductive, aromatic nitro compounds to heterocyclic compounds, 48,115... [Pg.72]

Azole approach. Application of the commonly used method for reductive cyclization of aromatic nitro compounds by means of triethyl phosphite to the 4-c-nitrobenzylidene oxazoles (249) leads to the fused quinolines (250) (69JCS(C)385). [Pg.662]

This reaction can be traced back to the initial work of Cadogan for the preparation of car-bazole by the reductive cyclization of aromatic nitro compounds with triethyl phosphite. This reaction was then extended by Sundberg to the fornnation of indoles by the treatment of o-nitrostyrene with triethyl phosphite or the formation of indolines from the o-alkyl nitrobenzenes. Thus the formation of indole from the reduction of o-nitfostyrenes is referred to as the Cadogan-Sundberg indole synthesis." ... [Pg.585]

Perhaps the most reliable method for the reductive cyclization of a nitro ester to a hydroxamic acid is that which involves treatment with sodium horohydride in the presence of palladium on charcoal. Although under these conditions aromatic nitro compounds are reduced to amines, o-nitro esters such as 53, in which the ester group is suitably oriented with respect to the nitro group, give good yields of cyclic hydroxamic acids (54). Coutts and his co-... [Pg.213]

The reduction of aromatic nitro compounds to amino derivatives and cyclizations to various heterocyclic compounds are presented in Chapter 9. Recent advances are presented here. Reaction of 2-nitrobenzaldehyde with vinyl carbonyl compounds in the presence of 1,4-diazbi-cyclo[2.2.2]octane affords Baylis-Hillman products, the catalytic reduction of which results in direct cyclization to quinoline derivatives (Eq. 10.78).134... [Pg.355]

Since most anilines are derived from nitro intermediates the reduction of the aromatic nitro group followed by cyclization of the aniline in situ has offered a direct approach to the synthesis of quinolines. The ort/io-nitro cinnamic acid derivatives 28 undergo cyclization, where R corresponds to R , respectively, when treated with zinc in near-critical water at 250 °C... [Pg.243]

The widely employed Leimgruber-Batcho protocol for indole synthesis comprises two consecutive steps—the formation of enamines followed by a reductive cyclization. The formation of enamines (such as 14, Scheme 7) presumably required an initial deprotonation of the methyl ortho to the aromatic nitro-group by methoxide generated from DMF-DMA under elevated temperatures (overnight heating in DMF) [27]. The use of microwave irradiation at 180 °C allowed the reduction of the time of formation of enamines such as 14 from 22 h (at 110°C) to 4.5 h (and even to 40 min in several... [Pg.57]

Reduction of T [l-(2-nitrophenyl)-l//-pyrrol-2-yl]sulfonyl -acetone or -1-phenylethan-l-one with sodium borohy-dride and 5% palladium on carbon, a reagent known to convert aromatic nitro compounds to hydroxylamines, triggers intramolecular interaction and gives pyrrolo[l,2- ][3,l,6]benzothiadiazocine derivatives 90 (Equation 11 <2001MI1405, 2004T8807>). This method was further successfully applied to the reductive cyclization of 2- [l-(2-nitrophenyl)-17/-pyrrol-2-yl]sulfanyl acetonitrile. [Pg.493]

In 1962, Prof. John I. G. Cadogan at University of St. Andrews observed that aromatic C-nitroso compounds were readily deoxygenated by triethyl phosphite. Carbazoles were prepared from 2-nitrosdb ary s in this fashion albeit in low yields. Later on that year, he published an article titled Reduction of Nitro Compounds by Triethyl Phosphite A New Cyclization Reaction in the journal Proceedings of the Chemical Society In the paper, Cadogan described that 2- /7robiaryIs were also readily deoxygenated by... [Pg.112]

In a similar vein, the amino group in sulfide 14 (obtained presumably by an aromatic displacement reaction) is first converted to the bromide by Sandmeyer reaction to give 25. Reduction of the nitro group (16) followed by cyclization gives the substituted phenothiazine. Alkylation with the familiar halide (3) affords dimethothiazine (18). ... [Pg.374]

Similar to the Fisher indole synthesis, reductive cyclization of nitro aromatics offers a powerful means of forming indoles. Reductive cyclization of ortho, 2 -dinitrostyrenes has occurred in many ways, by TiCl3, NaBH4-Pd/C, H2-Pcl/C, and other reductive methods.89 Corey and coworkers have used the Borchardt modification (Fe-AcOFI, sihca gel, toluene at reflux for the reductive cyclization of o-ji-dinitrostyrenes) to prepare 6,7-dimethoxyindole (Eq. 10.65) in a total synthesis of aspidophytine (see Schemes 3.3 and 3.4 in Section 3.2.l).89d... [Pg.344]

Nitro compounds, aromatic, reductive cyclization with triethyl phosphite, 48, 115... [Pg.78]

A concerted elimination-cyclization mechansim, involving a sulfenyl halide in a 1,3-butadiene-1-thio system, is the most probable mechanism for the formation of benzo[6 Jthiophenes from cinnamic acids or 4-aryl-2-butanones by treatment with thionyl chloride. The reactions shown in Scheme 5 have been carefully worked out, and the intermediates isolated (75JOC3037). The unique aspect of this synthesis is the reduction of the sulfinyl chloride (a) by thionyl chloride to form the sulfenyl chloride (b). The intermediate (b) was isolated and converted in pyridine to the 3-chlorobenzo[6]thiophene-2-carbonyl chloride in 36% yield (73TL125). The reaction is probably initiated by a sulfenyl ion attack on the aromatic ring, since it is promoted by electron-releasing groups para to the site of ring closure. For example, when X in (36) was N02, a 23% yield of (37), a mixture of 5-and 7-nitro derivatives, was obtained, but when X in (36) was OMe, a 54% yield of (37) was obtained, contaminated with some 3,4-dichloro-5-methoxybenzo[6]thiophene-2-carboxylic acid. [Pg.870]


See other pages where Cyclization, reductive, aromatic nitro is mentioned: [Pg.7]    [Pg.16]    [Pg.96]    [Pg.228]    [Pg.115]    [Pg.16]    [Pg.106]    [Pg.363]    [Pg.188]    [Pg.363]    [Pg.318]    [Pg.271]    [Pg.489]    [Pg.404]    [Pg.167]    [Pg.357]    [Pg.374]    [Pg.379]    [Pg.427]    [Pg.87]    [Pg.376]    [Pg.393]    [Pg.398]    [Pg.933]    [Pg.314]    [Pg.370]    [Pg.416]    [Pg.443]    [Pg.317]   


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Aromatic cyclization

Aromatic, reduction

Cyclizations reductive

Nitro compounds, aromatic, reductive cyclization with triethyl phosphite

Nitro reductions

Nitro-aromatics

Reductive Aromatization

Reductive cyclization of aromatic nitro

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