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Quinolines, phenyl-, nitration

The nitration of l,2,5-selenadiazolo[3,4-/] quinoline 77 with benzoyl nitrate affords the 8-nitro derivative 78, whereas methylation with methyl iodide or methyl sulfate afforded the corresponding 6-pyridinium methiodide 79 or methosulfate 80, respectively (Scheme 29). The pyridinium salt 80 was submitted to oxidation with potassium hexacyanoferrate and provided 7-oxo-6,7-dihydro derivative 81 or, by reaction of pyridinium salt 79 with phenylmagnesium bromide, the 7-phenyl-6,7-dihydro derivative 82. Nucleophilic substitution of the methiodide 79 with potassium cyanide resulted in the formation of 9-cyano-6,9-dihydroderivative 83, which can be oxidized by iodine to 9-cyano-l,2,5-selenadiazolo [3,4-/]quinoline methiodide 84. All the reactions proceeded in moderate yields (81IJC648). [Pg.226]

Oxidation of 5-arylazo-6-aminoquinoline 146 with copper sulfate in pyridine gave the corresponding 2-aryltriazolo[4,5-/]quinolines 147. Condensation of halo-genated nitrobenzenes with triazolo[4,5-/]quinoline 145 yielded the appropriate 2H- and 3//-aryl derivatives. The nitration of 3-phenyl-3//-triazolo[4,5-/]quino-line 147 occurred at position 4 of the phenyl ring (Scheme 46) (73T221). [Pg.250]

Quinoline, 5-nitro-oxidation, 2, 210 synthesis, 2, 318 Quinoline, 6-nitro-nitration, 2, 318 Quinoline, 7-nitro-nitration, 2, 318 synthesis, 2, 318 Quinoline, 8-nitro-Doebner-von Miller synthesis, 2, 466 synthesis, 2, 318 Quinoline, 3-pentyl-Friedlander synthesis, 2, 443 Quinoline, perhydro-conformation, 2, 160 synthesis, 2, 376 Quinoline, 2-phenyl-reactions... [Pg.830]


See other pages where Quinolines, phenyl-, nitration is mentioned: [Pg.832]    [Pg.832]    [Pg.832]    [Pg.832]    [Pg.220]    [Pg.198]    [Pg.1113]    [Pg.223]   
See also in sourсe #XX -- [ Pg.58 , Pg.251 ]




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Nitrations quinoline

Quinoline nitration

Quinoline phenylation

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