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Acyl halides reactions

The majority of the acyl halide reactions with episulfides have involved ethylene sulfide and propylene eulfide with C -Ca aliphatic acyl halides and have given 2-haloalkyl thiolesterB in good yields. A survey of these reactions is summarized in Table 16. [Pg.574]

Even more facile than the reaction of an acid with an alcohol is the reaction of an alcohol with an acyl halide (Reaction XIV). [Pg.14]

The condensations can be carried out by a number of different techniques [26, 28]. A few of them will be shown below. One is to carry out amino acyl halide reactions ... [Pg.554]

With gaseous amines, the addition techniques mentioned under acyl halide reactions may be applied. With liquid amines, the preparation of A-ethylperfluorobutyramide may serve as a model synthesis. As to final purification procedures, solid amides may be recrystallized (alcohol, alcohol-water, petroleum ether, etc. are typical solvents), or, in many cases, distilled under reduced pressure. Liquid amides are best purified by distillation. [Pg.102]

The catalysis of alkyl halide and acyl halide reactions does not require cocatalysts. It has been repeatedly shown that stable carbonium ions... [Pg.181]

The conversion of an aliphatic carboxylic acid into the a-bromo- (or a-chloro ) acid by treatment with bromine (or chlorine) in the presence of a catal3rtic amount of phosphorus tribromide (or trichloride) or of red phosphorus is known as the Hell-Volhard-Zelinsky reaction. The procedure probably involves the intermediate formation of the acyl halide, since it is known that halogens react more rapidly with acyl haUdes than with the acids themselves ... [Pg.427]

By the reaction between a solution of an acyl halide in a dry organic solvent, such as toluene, with a cold solution of sodium peroxide, for example ... [Pg.807]

My early work with acyl fluorides also involved formyl fluoride, ITCOF, the only stable acyl halide of formic acid, which was first made in 1933 by Nyesmeyanov, who did not, however, pursue its chemistry. 1 developed its use as a formylating agent and also explored formyla-tion reactions with CO and HF, catalyzed by BF3. [Pg.58]

Acyl halides react with organometallic reagents without catalysts, but sometimes the Pd-catalyzed reactions give higher yields and selectivity than the Lincatalyzed reactions. Acyl halides react with Pd(0) to form the acylpalladium complexes 846, which undergo facile transmetallation. [Pg.253]

The Pd-catalyzed hydrogenoiysis of acyl chlorides with hydrogen to give aldehydes is called the Rosenmund reduction. Rosenmund reduction catalyzed by supported Pd is explained by the formation of an acylpalladium complex and its hydrogenolysis[744]. Aldehydes can be obtained using other hydrides. For example, the Pd-catalyzed reaction of acyl halides with tin hydride gives aldehydes[745]. This is the tin Form of Rosenmund reduction. Aldehydes are i ormed by the reaction of the thio esters 873 with hydrosilanes[746,747]. [Pg.257]

The reaction of benzoyl chloride with (Me3Si)2 affords benzoyltrimethylsi-lane (878)[626,749,750]. Hexamethyldigermane behaves similarly. The siloxy-cyclopropane 879 forms the Pd homoenolate of a ketone and reacts with an acyl halide to form,880. The 1,4-diketone 881 is obtained by reductive elimination of 880 without undergoing elimination of /7-hydrogen[751]. [Pg.258]

The acylpalladium complex formed from acyl halides undergoes intramolecular alkene insertion. 2,5-Hexadienoyl chloride (894) is converted into phenol in its attempted Rosenmund reduction[759]. The reaction is explained by the oxidative addition, intramolecular alkene insertion to generate 895, and / -elimination. Chloroformate will be a useful compound for the preparation of a, /3-unsaturated esters if its oxidative addition and alkene insertion are possible. An intramolecular version is known, namely homoallylic chloroformates are converted into a-methylene-7-butyrolactones in moderate yields[760]. As another example, the homoallylic chloroformamide 896 is converted into the q-methylene- -butyrolactams 897 and 898[761]. An intermolecular version of alkene insertion into acyl chlorides is known only with bridgehead acid chlorides. Adamantanecarbonyl chloride (899) reacts with acrylonitrile to give the unsaturated ketone 900[762],... [Pg.260]

One type of o-aminobenzyl anion synthon is a mixed Cu/Zn reagent which can be prepared from o-toluidines by / i.s-trimethylsilylation on nitrogen, benzylic bromination and reaction with Zn and CuCN[l]. Reaction of these reagents with acyl halides gives 2-substituted indoles. [Pg.49]

The simplest procedures for 2-acylation involve reaction of an jV-protected 2-lithioindole with an acyl halide, anhydride or ester. Such reactions typically give good yields of 2-acylindoles. Table 10.3 presents some examples. Aryl... [Pg.100]

Friedel-Crafts acylation An analogous reaction occurs when acyl halides react with benzene in the presence of alumi num chloride The products are acylben zenes... [Pg.475]

Another version of the Friedel-Crafts reaction uses acyl halides instead of alkyl halides and yields aryl ketones... [Pg.484]

Vinylic halides and aryl halides do not form carbocations under conditions of the Friedel-Crafts reaction and so cannot be used in place of an alkyl halide or an acyl halide... [Pg.511]

Appaiendy a molai equivalent of catalyst (AlCl ) combines with the acyl halide, giving a 1 1 addition compound, which then acts as the active acylating agent. Reaction with aromatics gives the AlCl complex of the product ketone hberating HX ... [Pg.557]

Carboxylic acid hydiazides are prepared from aqueous hydrazine and tfie carboxylic acid, ester, amide, anhydride, or halide. The reaction usually goes poody with the free acid. Esters are generally satisfactory. Acyl halides are particularly reactive, even at room temperature, and form the diacyl derivatives (22), which easily undergo thermal dehydration to 1,3,4-oxadiazoles (23). Diesters give dihydtazides (24) and polyesters such as polyacrylates yield a polyhydrazide (25). The chemistry of carboxyhc hydrazides has been reviewed (83,84). [Pg.280]

Addition to Carbonyl Compounds. Unlike Grignard and alkykitliium compounds, trialkylboranes are inert to carbonyl compounds. The air-catalyzed addition to formaldehyde is exceptional (373). Alkylborates are more reactive and can transfer alkyl groups to acyl halides. The reaction provides a highly chemoselective method for the synthesis of ketones (374). [Pg.319]

Reaction with Acyl Halides. Acyl halides react at loom tempeiatuie with mono- and dialkanolamines to give amides (10,11). [Pg.5]

A very useful procedure for introducing a cyano group into a pyridazine ring is the Reissert-type reaction of the A/-oxide with cyanide ion in the presence of an acyl halide or dimethyl sulfate. The cyano group is introduced into the a-position with respect to the A-oxide function of the starting compound. The yields are, however, generally poor. In this way, 6-cyanopyridazines (111) can be obtained from the corresponding pyridazine 1-oxides (Scheme 33). [Pg.24]

Pyrrole and alkylpyrroles can be acylated by heating with acid anhydrides at temperatures above 100 °C. Pyrrole itself gives a mixture of 2-acetyl- and 2,5-diacetyl-pyrrole on heating with acetic anhydride at 150-200 °C. iV-Acylpyrroles are obtained by reaction of the alkali-metal salts of pyrrole with an acyl halide. AC-Acetylimidazole efficiently acetylates pyrrole on nitrogen (65CI(L)1426). Pyrrole-2-carbaldehyde is acetylated on nitrogen in 80% yield by reaction with acetic anhydride in methylene chloride and in the presence of triethylamine and 4-dimethylaminopyridine (80CB2036). [Pg.51]

Azoles containing a free NH group react comparatively readily with acyl halides. N-Acyl-pyrazoles, -imidazoles, etc. can be prepared by reaction sequences of either type (66) -> (67) or type (70)->(71) or (72). Such reactions have been carried out with benzoyl halides, sulfonyl halides, isocyanates, isothiocyanates and chloroformates. Reactions occur under Schotten-Baumann conditions or in inert solvents. When two isomeric products could result, only the thermodynamically stable one is usually obtained because the acylation reactions are reversible and the products interconvert readily. Thus benzotriazole forms 1-acyl derivatives (99) which preserve the Kekule resonance of the benzene ring and are therefore more stable than the isomeric 2-acyl derivatives. Acylation of pyrazoles also usually gives the more stable isomer as the sole product (66AHCi6)347). The imidazole-catalyzed hydrolysis of esters can be classified as an electrophilic attack on the multiply bonded imidazole nitrogen. [Pg.54]

Pyrimidine-2-sulfonyl chloride, 4,6-dimethyl-reactions, 3, 97 Pyrimidinesulfonyl halides reactions, 3, 97 Pyrimidinethiols S-acylation, 3, 95 S-alkylation, 3, 94 oxidation, 3, 94 synthesis, 3, 135 Pyrimidine-5-thiols oxidation, 3, 94 synthesis, 3, 136... [Pg.808]


See other pages where Acyl halides reactions is mentioned: [Pg.244]    [Pg.244]    [Pg.182]    [Pg.231]    [Pg.6]    [Pg.147]    [Pg.313]    [Pg.148]    [Pg.664]    [Pg.883]    [Pg.887]    [Pg.888]   
See also in sourсe #XX -- [ Pg.210 ]

See also in sourсe #XX -- [ Pg.210 ]




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Acyl halide-aldehyde cyclocondensation reactions

Acyl halides Friedel-Crafts reaction

Acyl halides Heck reaction

Acyl halides Rosenmund reaction

Acyl halides addition-elimination reactions

Acyl halides cross-coupling reactions

Acyl halides, reaction with aluminum

Acyl halides, reactions with ethanol

Acyl halides, reactions with phosphites

Alcohols reaction with acyl halides

Aldehydes reaction with acyl halides

Alkenes reaction with acyl halides

Anilines reaction + acyl halides

Benzylic reaction with acyl halides

Carboxylic acids reaction with acyl halides

Carboxylic esters, acylation reaction, with acyl halides

Chloride, aluminum reaction with acyl halides

Diazomethane reaction with acyl halides

Enamines, reaction with acyl halides

Enolate anions reaction with acyl halides

Ethers reaction with acyl halides

Friedel-Crafts acylation reactions metal halides

From acyl halides reaction with alcohols

From acyl halides reaction with amines

From acyl halides reaction with carboxylic acids

From acyl halides reaction with phenols

Grignard reagents reaction with acyl halides

Halides, acyl reaction with amines

Hydrazides reaction with acyl halides

Hydroxylamine reaction with acyl halides

Ketones reaction with acyl halides

Metal alkoxides reactions with acyl halides

Nucleophilic acyl substitution reaction acid halides

Organic halides acyl chloride reactions

Organocadmium reagents reaction with acyl halides

Organocopper compounds, reactions with acyl halides

Phosphites, trialkyl reaction with acyl halides

Pyrolysis reaction with acyl halides

Reaction of acyl halides with hydrogen sulfide and its derivatives

Reaction with acyl halides

Simple acyl halide and anhydride reactions

Thiols reaction with acyl halides

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