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Gattermann aldehyde reaction

This reaction, applicable only to the preparation of hydroxy-aldehydee, is alternative to the Gattermann aldehyde reaction (or the Adams modification of it) given under 4. The yields are usually smaller, but a large quantity of the phenol may be recovered. The following mechanism is consistent with the known facts ... [Pg.692]

By the condensation of a nitrile with a phenol or phenol ether in the presence of zinc chloride and hydrogen chloride a hydroxyaryl- or alkoxyaryl-ketone is produced. The procedure is termed the Hoesch reaction and is clearly an extension of the Gattermann aldehyde reaction (Section IV,121). The reaction gives the best results with polyhydric phenols and their ethers with simple monohydric phenols the imino ester hydrochloride is frequently the sole product for example ... [Pg.727]

Gabriel synthesis Gattermann aldehyde reaction Gattermann reaction Gattermann-Koch reaction Gomberg-Hey reaction Grignard reaction... [Pg.9]

Gattermann-Koch reaction Formylation of an aromatic hydrocarbon to yield the corresponding aldehyde by treatment with CO, HCl and AICI3 at atmospheric pressure CuCl is also required. The reaction resembles a Friedel-Crafts acylation since methanoyl chloride, HCOCl, is probably involved. [Pg.187]

The Gattermann-Koch formylatioii was found unsuited to the preparation of aldehydes from phenols and phenol ethers such aldehydes may be obtained by Gatteimann s aldehyde reaction. [Pg.689]

The Gattermann-Koch reaction when appHed to alkenes or alkanes gives ketones or acids but not aldehydes. However, the Vilsmeier aldehyde synthesis can be appHed to aUphatic compounds. For example, 1,2-diaLkoxyethylenes react with /V-methy1foTmani1ide and POCl to give alkoxymalondialdehydes ... [Pg.563]

Gattermann aldehyde synthesis, 9, 2 Gattermann-Koch reaction, 5, 6 Germanes, addition to alkenes and alkynes, 13, 4 Glycals,... [Pg.589]

Crafts alkylation and acylation (Section 22-4E and 22-4F), the Gattermann-Koch reaction for preparation of aldehydes from arenes and carbon monoxide (Section 22-4F), and the Kolbe-Schmitt, Reimer-Tiemann, and Gattermann reactions for synthesis of acids and aldehydes from arenols (Section 26-1E). [Pg.1319]

Phenolic ketones may be prepared by the Hoesch acylation reaction, which may be regarded as an extension of the Gattermann aldehyde synthesis (Section 6.10.1, p. 990). The procedure involves reaction of a nitrile with a phenol (or phenolic ether) in the presence of zinc chloride and hydrogen chloride best results are usually obtained with polyhydric phenols or their ethers, as for example in the preparation of phloroacetophenone (Expt 6.125). The formation of phenolic ketones by means of the Fries rearrangement of phenolic esters with aluminium chloride is discussed on p. 976. [Pg.1008]

In a related reaction, the Gattermann aldehyde synthesis, the carbon monoxide of the previous reaction is replaced by hydrogen cyanide (Scheme 6.6). This reaction gives poor yields with benzene itself, but is successful with activated species such as aryl ethers and phenols. The reaction proceeds via an aryl imine and the mechanism is not dissimilar to that of the Vilsmeier-Haack reaction. [Pg.70]

Just as protocatechuic aldehyde may be synthesized by the Reimer-Tiemann or Gattermann-Koch reactions from the -di-phenol pyro-catechinol, so vanillin may be made by the same reactions from the mono-methyl ether of pyrocatechinol, Le.f guaiacol (p. 621). [Pg.662]


See other pages where Gattermann aldehyde reaction is mentioned: [Pg.1176]    [Pg.1176]    [Pg.902]    [Pg.415]    [Pg.106]    [Pg.109]    [Pg.902]    [Pg.628]    [Pg.660]    [Pg.902]    [Pg.184]   
See also in sourсe #XX -- [ Pg.689 , Pg.690 , Pg.701 , Pg.702 ]

See also in sourсe #XX -- [ Pg.689 , Pg.690 , Pg.701 , Pg.702 ]




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