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2-Aryl-7-nitro

Die regiospezifische Synthese von 3-Aryl-4-nitro-furazan-2-oxiden gelingt durch Umset-zung von 2-Aryl-1-nitro-ethenen mit Distickstofftrioxid dabei werden - vermutlich iiber die Pseudonitrosite und die tautomeren Monoxime und Nitrolsauren - direkt die Furazan-2-oxide gebildet251 ... [Pg.728]

Vilsmeier reaction, 4, 1051 Furo[3,2-6]pyrroles MO calculations, 6, 979 synthesis, 4, 1069 6, 1009 Furo[3,4-a]pyrrolo[2,1,5-cd]indolizine nomenclature, 1, 22 Furopyrylium salts, 4, 993-995 Furoquinolines biosynthesis, 4, 992 occurrence, 4, 988 pharmacology, 4, 992 reactions, 4, 988 synthesis, 4, 989 Furo[3,2-c]quinolines, 4, 991 Furo[3,4-fe]quinoxaline, 1,3-diphenyl-synthesis, 4, 993 Furoquinoxalines, 4, 992 Furo[2,3-6]quinoxalines synthesis, 4, 992 Furosemide toxicity, 1, 136 Furospinulosin UV spectra, 4, 587 Furospongin-I mass spectrometry, 4, 583 Furo[3,4-d][l,2,3]triazole, 2,6-dihydro-synthesis, 6, 996 Furo[3,4 -d][ 1,2,3]triazoles synthesis, 6, 996 Furoxan, 4-amino-3-aryl-tautomerism, 6, 404 Furoxan, 4-amino-3-methyl-synthesis, 4, 414 Furoxan, 4-aryl-3-methyl-rearrangement, 6, 408 Furoxan, 3-aryl-4-nitro-synthesis, 6, 414 Furoxan, 4-benzoyl-3-methyl-oxime... [Pg.638]

Reduces nitrile, amides and aryl nitro groups to amines... [Pg.49]

Reduction of aryl nitro compounds (Sec tion 22 9) The standard method for the preparation of an arylamine is by nitra tion of an aromatic ring followed by reduction of the nitro group Typical re ducing agents include iron or tin in hydro chloric acid or catalytic hydro genation... [Pg.957]

Aryl-nitro-Gruppen bleiben mit Natrium-boranat1 bzw. Triorgano-zinn-hydriden2 (Ausnahme uberschiissiges Triphenyl-zinnhydrid3) erhalten. [Pg.395]

Mercuration of aromatic compounds can be accomplished with mercuric salts, most often Hg(OAc)2 ° to give ArHgOAc. This is ordinary electrophilic aromatic substitution and takes place by the arenium ion mechanism (p. 675). ° Aromatic compounds can also be converted to arylthallium bis(trifluoroacetates), ArTl(OOCCF3)2, by treatment with thallium(III) trifluoroacetate in trifluoroace-tic acid. ° These arylthallium compounds can be converted to phenols, aryl iodides or fluorides (12-28), aryl cyanides (12-31), aryl nitro compounds, or aryl esters (12-30). The mechanism of thallation appears to be complex, with electrophilic and electron-transfer mechanisms both taking place. [Pg.793]

Reaction of halo sulfonic acid esters with boranes 10-125 Alcoholysis of sulfonic acid derivatives 13-15 Vicarious substitution of aryl nitro compounds... [Pg.1687]

In this chapter we describe a novel, safe and efficient large-scale synthetic approach to tricycle thienobenzazepines. The key steps in the synthesis include a chemoselective hydrogenation of an aryl-nitro functionality in the presence of a 3-bromo thiophene and a subsequent palladium-catalyzed intramolecular aminocarbonylation telescoped sequentially after simple catalyst and solvent exchange. [Pg.62]

Scheme 4. The compounds and intermediates on the rear plane of the bicubic system (farthest from the reader) are protonated on the pyridine nitrogen atom those on the front plane (nearest the reader) are not. Laviron s work has shown that the reduction of 14 and its corresponding N-oxide34, and indeed probably most aryl nitro compounds, proceeds by an ECEC sequence leading to the neutral N,N-dihydroxy [ArN(OH)2] intermediate at all proton concentrations from Ho = —6 to pH 9.6. This substance then loses water to form the nitroso compound, which then undergoes a second sequence leading to the arylhydroxylamine. Scheme 4. The compounds and intermediates on the rear plane of the bicubic system (farthest from the reader) are protonated on the pyridine nitrogen atom those on the front plane (nearest the reader) are not. Laviron s work has shown that the reduction of 14 and its corresponding N-oxide34, and indeed probably most aryl nitro compounds, proceeds by an ECEC sequence leading to the neutral N,N-dihydroxy [ArN(OH)2] intermediate at all proton concentrations from Ho = —6 to pH 9.6. This substance then loses water to form the nitroso compound, which then undergoes a second sequence leading to the arylhydroxylamine.
The potential application of this catalytic system was illustrated by Takemoto in the application to a tandem conjugate addition towards the asymmetric synthesis of (-)-epibatidine, a biologically active natural product [100, 101], The authors designed an enantioselective double Michael addition of an unsaturated functionalized P-ketoester to a p-aryl nitro-olefm. The asymmetric synthesis of the 4-nitro-cyclohexanones was achieved in both high diastereoselectivity and enantioselectivity, with the natural product precursor synthesized in 90% yield and 87.5 12.5 er (Scheme 49). The target (-)-epibatidine was subsequently achieved in six steps. [Pg.179]

The best reactivity and selectivity was illustrated with the binaphthol derived thiourea amine catalyst 277. The substrate scope was explored primarily with P-aryl-nitro-olefms of both electron-donating and electron-withdrawing natures. Yields and selectivities were high for the majority of substrates (Scheme 78). [Pg.195]

The intermolecular alkylation of metallo nitronates with various alkyl halides is limited. The addition of methyl iodide to the silver salt of an aryl nitro-methane provides the corresponding methyl nitronate in moderate yield (Eq. 2.13) (150), which has also been extended to the silver salt of trinitromethane (Scheme 2.16) (151-153). However, in the case of primary halides, both O- and C-alkylation are observed. For secondary and tertiary halides, only O-alkylation is observed, but in low yields. Unfortunately, under the reaction conditions, the starting alkyl halide can undergo dehydrohalogenation to provide the corresponding alkene, which then undergoes [3+2] cycloaddition with the alkyl nitronate. [Pg.131]

Improvements in the traditional aryl C-1 cyclization reaction were reported (Scheme 11). Generally, condensation reactions of phenethylamine derivatives do not perform well with electron-withdrawing groups. Reaction of sulfamoyl- 3-phenethylamines 46, even containing an aryl nitro group, with chloro(methylthio)acetate <99H(51)103> or a-... [Pg.248]

Yutilov et al. reported the formation of the [l,2,3]triazolo[4,5- / pyridazin-4-one ring system with simultaneous conversion of the 7-nitro into a methyl substituent, and reduction of the aryl nitro group to an amino substituent on... [Pg.695]

Mit Nitrooxy-methan gelingt auf analoge Weise die Umsetzung von Aryl-essigsauren zu Aryl-nitro-methanen2 ... [Pg.156]

Die Addition von Lithium-organocupraten an l-Aryl-2-nitro-l-alkene liefert a-Aryl-/ -nitro-alkane (12—79%)1 ... [Pg.235]


See other pages where 2-Aryl-7-nitro is mentioned: [Pg.638]    [Pg.2239]    [Pg.756]    [Pg.2240]    [Pg.2294]    [Pg.2294]    [Pg.2294]    [Pg.396]    [Pg.1645]    [Pg.1662]    [Pg.1666]    [Pg.1681]    [Pg.1687]    [Pg.1687]    [Pg.163]    [Pg.833]    [Pg.838]    [Pg.843]    [Pg.192]    [Pg.135]    [Pg.154]    [Pg.468]    [Pg.156]    [Pg.609]    [Pg.1271]    [Pg.1282]    [Pg.1284]    [Pg.1293]    [Pg.1296]    [Pg.1296]    [Pg.785]   
See also in sourсe #XX -- [ Pg.743 ]




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2-Aryl-l-nitro

Aldehydes from aryl nitro compounds

Aryl nitro compounds

Aryl nitro compounds, preparation

Aryl nitro compounds, sulfonation

Aryl, from aromatic nitro compounds

Arylation of Nitro Compounds

Benzotriazole 2- aryl-7-nitro

Esters from aryl nitro compounds

From aryl nitro compounds

Nitriles from aryl nitro compounds

Nitro alkanes arylation

Nucleophilic Substitution in Nitro-Substituted Aryl Halides

Reduction of aryl nitro compound

Sulfones from aryl nitro compounds

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