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Sandmeyer

The diazonium salts usually decompose when warmed with water to give a phenol and nitrogen. When treated with CuCl, CuBr, KI, the diazo group is replaced by chlorine, bromine or iodine respectively (Sandmeyer reaction). A diazonium sulphate and hydroxyl-amine give an azoimide. The diazonium salt of anthranilic acid (2-aminobenzoic acid) decomposes to give benzyne. ... [Pg.133]

Gattermann s reaction A variation of the Sandmeyer reaction copper powder and hydrogen halide are allowed to react with the diazonium salt solution and halogen is introduced into the aromatic nucleus in place of an amino group. [Pg.187]

Copper 1) chloride, bromide and cyanide were used by Sandmeyer to introduce a chlorine, a bromine atom and a cyanide group respectively into a benzene ring by addition to the phenyl diazonium salt. [Pg.416]

Aromatic nitriles (or aryl cyanides) can be obtained by methods (1) and (3). but not by method (2). In addition, aromatic nitriles can be prepared by two other methods, (a) from the corresponding diazo compound by Sandmeyer s Reaction (p. 189), (b) by fusing the corresponding sulphonic acid (or its salts)... [Pg.121]

Benzonitrile (Phenyl Cyanide). CeHaCN. (Sandmeyer s Method.)... [Pg.190]

Potassium cupro-cyanide is the most convenient form in which cuprous cyanide can be used in Sandmeyer s Reaction. It is prepared by adding an excess of potassium cyanide to copper sulphate solution, whereby the cupric cyanide which is formed immediately breaks down to give cuprous cyanide and cyanogen, and the cuprous cyanide then dissolves in the excess of potassium... [Pg.191]

The following mechanism of the Sandmeyer reaction has been proposed as a result of a kinetic study, and incidentally accounts for the formation of the azu compounds as by-products. The catalyst is the CuCl ion produced in the dissolution of cuprous chloride in the chloride solution ... [Pg.592]

In the preparation of bromo compounds by the Sandmeyer reaction, the amine is generally diazotised in sulphuric acid solution (or in hydrobromic acid solution), and the resulting aryldiazonium sulphate (or bromide) is treated with a solution of cuprous bromide in excess of hydrobromic acid the addition... [Pg.592]

The yields by the Gattermann reaction are usually not as high as those by Sandmeyer s method. Copper powder is also employed in the preparation of sulphinlc acids, for example ... [Pg.593]

The Sandmeyer reaction may also be applied to the preparation of nitriles. The solution of the diazonium salt is added to a solution of cuprous cyanide in excess of sodium or potassium cyanide solution (sometimes improved yields are obtained by substituting nickel cyanide for cuprous cyanide), for example CH3 CH, CH3... [Pg.594]

By the hydrolysis of nitriles. The nitriles may be easily prepared either from amines by the Sandmeyer reaction (Section IV,66) or by the action of cuprous cyanide upon aryl halides (compare Section IV,163). Benzyl cyanide... [Pg.751]

Pinacol-pinacolone rearrangement Prileschajew epoxidation reaction Reformataky reaction Reimer-Tiemanii reaction Rosenmund reduction Sandmeyer reaction Schiemaim reaction Schmidt reaction or rearrangement Schotten-Baumann reaction Skraup reaction Sommelet reaction. ... [Pg.1211]

Halothiazoles are usually obtained from 2-aminothiazoles through the Sandmeyer reaction. Nevertheless, ammonolysis has sometimes proved useful for the preparation of 2-aminothiazole derivatives. Detweiler et al. (18) obtained 2-(u-pyridinylamino)thiazole (1) from 2-bromothiazole (Scheme 1). The reaction is easier if a nitro group occupies the 5-position of the thiazole ring (19-21). Ethylene diamine derivatives undergo this reaction with 2-haiothiazoles (22-24). [Pg.12]

The Sandmeyer reaction, the substitution of an amino group by an halogen atom that is subsequently substituted after reduction by hydrogen atom. [Pg.232]

The replacement of 2-amino group by a hydrogen can be achieved by diazotization, followed by reduction with hypophosphorous acid (1-8, 13). Another method starting from 2-aminothiazole is to prepare the 2-halo-thiazole by the Sandmeyer reaction (prepared also from the 2-hydroxy-thiazole), which is then dehalogenated chemically or catalytically (1, 9, 10). [Pg.339]

All four 2-halogenothiazoles are known. 2-Chloro (l- ll). 2 bromo (1, 2. 5, 8-10, 12-24), and 2-iodothiazole (8, 10, 25, 26) can be prepared from 2-aminothiazole by Sandmeyer reactions, with yields between 30... [Pg.565]

Some 2-halogeno-5-nitrothiazoles and 2-nitro-5-halogenothiazoles are known. 2-Halogeno-5-nitrothiazoles can be prepared by a Sandmeyer reaction from 2-amino-5-nitrothiazole (1, 85), while 2-nitro-5-halo-genothiazoles can be analogously prepared by decomposition of dia-zonium salts arising from 2-amino-5-halogenothiazoles in presence of nitrite anion (82, 84). [Pg.578]

Reactions that employ copper(I) salts as reagents for replacement of nitrogen m diazo mum salts are called Sandmeyer reactions The Sandmeyer reaction using copper(I) cyanide is a good method for the preparation of aromatic nitriles... [Pg.948]

The preparation of aryl chlondes bromides and cyanides by the Sandmeyer reac tion IS mechanistically complicated and may involve arylcopper intermediates... [Pg.948]

Sandmeyer reaction using cop per(l) bromide is applicable to the conversion of primary arylamines to aryl bromides... [Pg.961]

Sandmeyer reaction (Section 22 17) Reaction of an aryl dia zonium ion with CuCl CuBr or CuCN to give respec tively an aryl chloride aryl bromide or aryl cyanide (nitrile)... [Pg.1293]

Diazotization Routes. Conventional Sandmeyer reaction conditions are not suitable to make fluoroaromatics. Phenols primarily result from high solvation of fluoride ion in aqueous media. [Pg.318]

Physical properties for naphthalene mono-, di-, tri-, and tetracarboxyhc acids are summari2ed in Table 9. Most of the naphthalene di- or polycarboxyLic acids have been made by simple routes such as the oxidation of the appropriate dior polymethylnaphthalenes, or by complex routes, eg, the Sandmeyer reaction of the selected antinonaphthalenesulfonic acid, to give a cyanonaphthalenesulfonic acid followed by fusion of the latter with an alkah cyanide, with simultaneous or subsequent hydrolysis of the nitrile groups. [Pg.500]

Direct iodination or fluorination leads to ill-defined products and fragmentation, respectively. Sandmeyer chemistry and nucleophilic substitution of... [Pg.389]

Ha.loisoquinolines, The Sandmeyer reaction is commonly used to prepare chloroisoquinolines from the amino compound. The corresponding hydroxy compounds are also used by treatment with chlorides of phosphoms. The addition of bromine to a slurry of isoquinoline hydrochloride in nitrobenzene gives a 70—80% yield of 4-bromoisoquinoline [1532-97-4J. Heating 1-chloroisoquinoline [19493-44-8] with sodium iodide andhydriodic acid gives 1-iodoisoquinoline [19658-77-6] (179). [Pg.398]


See other pages where Sandmeyer is mentioned: [Pg.35]    [Pg.351]    [Pg.189]    [Pg.189]    [Pg.190]    [Pg.200]    [Pg.591]    [Pg.602]    [Pg.25]    [Pg.25]    [Pg.946]    [Pg.961]    [Pg.973]    [Pg.488]    [Pg.505]    [Pg.68]    [Pg.425]    [Pg.398]   
See also in sourсe #XX -- [ Pg.416 ]

See also in sourсe #XX -- [ Pg.416 ]

See also in sourсe #XX -- [ Pg.235 , Pg.348 ]

See also in sourсe #XX -- [ Pg.154 , Pg.279 , Pg.345 ]

See also in sourсe #XX -- [ Pg.394 ]

See also in sourсe #XX -- [ Pg.948 ]




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Amino Group to a Diazonium Ion The Sandmeyer Reaction

Anilines Sandmeyer isatin synthesis

Aryl bromides Sandmeyer reaction

Bromotoluene (Sandmeyer reaction)

Copper catalysts Sandmeyer reaction

Cyanation, Sandmeyer reaction

Diazonium salts Sandmeyer reaction

Gattermann Sandmeyers reaction

Halides Sandmeyer reaction

Hydroxylation, Sandmeyer reaction

Indigo Sandmeyer synthesis

Indoles Sandmeyer isatin synthesis

Iodination, Sandmeyer reaction

Isatins Sandmeyer synthesis

Natural products Sandmeyer reaction

Nitrogen compounds Sandmeyer reaction

Reaction XLIX.—(a) Action of Cuprous Potassium Cyanide on Aromatic Diazonium Compounds (Sandmeyer)

Redox Sandmeyer

SANDMEYER-GATTERMANN Aromatic

SANDMEYER-GATTERMANN Aromatic Substitution

Sandmeyer hydrolysis

Sandmeyer hydroxylation

Sandmeyer isatin synthesis

Sandmeyer method

Sandmeyer reaction

Sandmeyer reaction Subject

Sandmeyer reaction bromination

Sandmeyer reaction chlorination

Sandmeyer reaction mechanism

Sandmeyer reaction natural product synthesis

Sandmeyer reaction variations

Sandmeyer reaction with 3-aminopyridines

Sandmeyer reactions, copper®) bromide

Sandmeyer studies

Sandmeyer, Traugott

Sandmeyer, and Meerwein reactions

Sandmeyer-Gattermann Reaction

Sandmeyer-Reaktion

Sandmeyer-type reactions

Sandmeyer’s reaction

The Sandmeyer Reaction

The Sandmeyer Reaction 4-Chlorotoluene and 2-lodobenzoic Acid

The Sandmeyer procedure

Thiazole Sandmeyer reaction

Tolunitrile from p-toluidine (Sandmeyers reaction)

Triazines, Sandmeyer reaction

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