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Benzofuroxans benzimidazole oxides from

The second class of benzo-fused heterocycles accessible from benzofuroxans are benzimidazole oxides. In this case only one carbon from the co-reactant is incorporated in the product. With primary nitroalkanes 2-substituted l-hydroxybenzimidazole-3-oxides (46) are formed via displacement of nitrite, and / -sulfones behave similarly. The nitrile group of a-cyanoacetamides is likewise eliminated to alford 2-amide derivatives (46 R = CONRjX and the corresponding esters are formed in addition to the expected quinoxaline dioxides from acetoacetate esters. Under similar conditions secondary nitroalkyl compounds afford 2,2-disubstituted 2//-benzimidazole-1,3-dioxides (47). Benzimidazoles can also result from reaction of benzofuroxans with phosphorus ylides <86T3631>, nitrones (85H(23)1625>, and diazo compounds <75TL3577>. [Pg.245]

The generation from furoxans of other heterocyclic systems, some of which show useful biological activity (see Section 4.22.5), has been the subject of intensive investigation. The following subsections summarize the conversion of benzofuroxans into quinoxaline and benzimidazole oxides, the rearrangement of 4-substituted benzofuroxans, and the transformation of monocyclic furoxans into isoxazoles and isoxazolines, furazans, and pyrazolines. More detailed discussion is to be found in recent comprehensive reviews (75S415, 76H(4)767, 81AHC(29)251>. [Pg.407]

There are general reviews on heterocyclic syntheses by cycloaddition reactions of isocyanates and on the use of heterocyclic cations in preparative organic chemistry. More specific topics are 5-hydroxymethylfuran-2-carb-aldehyde, isobenzofurans and related ort/io-quinonoid systems, the conversion of 2//-cyclohepta[Zj] furan-2-one (1) into derivatives of azulene, the synthesis of indoles from o-alkylphenyl isocyanides, and abnormal Fischer indolization reactions of o-methoxyphenylhydrazones. Two reviews on isoindoles have appeared and a lecture on highly conducting charge-transfer complexes that are based on heterocyclic selenium and tellurium donors has been reprinted.Recent advances in the chemistry of imidazole and in the use of nitro-imidazoles as radiosensitizers have been summarized. There have been reviews on benzimidazole A -oxides and on dihydrobenzimidazoles, benzimidazolones, benzimidazolethiones, and related compounds. Other topics are synthetic applications of 1,3-dithiolium and 1,3-oxathiolium salts and of isoxazoles, the chemistry of benzisoxazoles, 2-amino-oxazoles, 5-oxazolones (2), furoxans, benzofuroxans, and related systems, the synthesis of five-membered meso-ionic compounds, and tetrazoles. ... [Pg.202]

Benzofuroxan (5) reacts under mild conditions with an enamine or with an aldehyde or ketone in the presence of ammonia or an amine to form mono- or disubstituted quinoxaline dioxides (151). Dark red dihydro-quinoxaline dioxides (e.g., 152) may be formed when an enamine is used which does not possess an a-hydrogen atom for elimination.381 2-Amino-substituted quinoxaline dioxides have been produced using (a) an ynamine [providing tertiary amines (153)],382 (b) chloroacetaldehyde and a primary amine [producing secondary amines (154)],9 and (c) some nitriles, e.g., malononitrile (to give the primary amine 155).382 The last reaction, however, is by no means a general one, since benzimidazoles are also produced from these substrates (see below). l-Hydroxyquinoxalin-2-one 4-oxides (156) can also be formed in several ways using (a) an a-substituted /1-ketoester (157)... [Pg.306]


See other pages where Benzofuroxans benzimidazole oxides from is mentioned: [Pg.407]    [Pg.425]    [Pg.219]    [Pg.407]    [Pg.425]    [Pg.264]    [Pg.204]    [Pg.407]    [Pg.89]    [Pg.407]    [Pg.310]   
See also in sourсe #XX -- [ Pg.29 , Pg.310 ]




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