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Ullmann reaction organocopper compounds

Since then, experiments have been reported which indicate that (1) organocopper compounds will couple with aryl halides (2) arylcopper compounds can be oxidatively and thermally dimerized (3) arylcopper compounds are intermediates in the Ullmann reaction (4) organocopper compounds are intermediates in copper-catalyzed decarboxylations and (5) copper-promoted coupling reactions are not restricted to aromatic halides. The copper(I) oxide-promoted coupling reactions, however, have still to yield firm evidence of a copper intermediate. [Pg.302]

An organocopper intermediate was detected by Lewin and Cohen in the reaction of / -iodotoluene with copper in a good complexing solvent (184). Analysis of protonated aliquots from a reaction performed in quinoline indicated an accumulation of />-tolylcopper to a maximum of 43% after 95 hours, at which point the iodide was consumed, and then a slow decrease to by dimerization. Other experiments also indicate the formation of an arylcopper compound in Ullmann reactions (127,141, 210). The isolation of deuterated products, presumably from the decomposition of an intermediate organocopper species in deuterated benzene and cyclohexane, suggested decomposition to free radicals (127). Decompositions of certain o-haloarylcopper intermediates by a benzyne mechanism cannot be totally excluded. The formation of a dichlorobenzene and by-products such as dibenzofuran and triphenylene from only the ortho isomer of the chloroiodobenzenes in Ullmann coupling reactions (210)... [Pg.302]

Organocopper reagents, such as methylcopper prepared from MeLi were also used as catalyst recently [148]. Yields could be further improved by ultrasonic irradiation [149],.as well as under phase transfer conditions [150]. It is surprising that, in contrast to the Ullmann biaryl synthesis, activated aromatic fluoro compounds (e.g. fluoro-esters, -nitrils, -aldehydes and -acetophenones) can couple with phenols in good yield. The reaction does not require any catalysts, but only K2CO3 as a base, [146] (Scheme 56). ... [Pg.307]


See other pages where Ullmann reaction organocopper compounds is mentioned: [Pg.99]    [Pg.216]    [Pg.302]    [Pg.191]    [Pg.489]    [Pg.496]    [Pg.209]   
See also in sourсe #XX -- [ Pg.209 , Pg.219 ]




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