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Hydrolysis ferf-butyl bromide

Hughes and Ingold observed that the hydrolysis of ferf-butyl bromide, which occurs readily, is characterized by a first-order rate law ... [Pg.315]

FIGURE 8.10 Proposed mechanism for hydrolysis of ferf-butyl bromide. [Pg.271]

Marchand and co-workers reported a synthetic route to TNAZ (18) involving a novel electrophilic addition of NO+ NO2 across the highly strained C(3)-N bond of 3-(bromomethyl)-l-azabicyclo[1.1.0]butane (21), the latter prepared as a nonisolatable intermediate from the reaction of the bromide salt of tris(bromomethyl)methylamine (20) with aqueous sodium hydroxide under reduced pressure. The product of this reaction, A-nitroso-3-bromomethyl-3-nitroazetidine (22), is formed in 10% yield but is also accompanied by A-nitroso-3-bromomethyl-3-hydroxyazetidine as a by-product. Isolation of (22) from this mixture, followed by treatment with a solution of nitric acid in trifluoroacetic anhydride, leads to nitrolysis of the ferf-butyl group and yields (23). Treatment of (23) with sodium bicarbonate and sodium iodide in DMSO leads to hydrolysis of the bromomethyl group and the formation of (24). The synthesis of TNAZ (18) is completed by deformylation of (24), followed by oxidative nitration, both processes achieved in one pot with an alkaline solution of sodium nitrite, potassium ferricyanide and sodium persulfate. This route to TNAZ gives a low overall yield and is not suitable for large scale manufacture. [Pg.266]


See other pages where Hydrolysis ferf-butyl bromide is mentioned: [Pg.360]    [Pg.288]    [Pg.183]    [Pg.75]    [Pg.181]    [Pg.75]   
See also in sourсe #XX -- [ Pg.317 ]




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