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Acid chlorides, reaction with

An ethereal solution of diazomethane free from alcohol may be prepared as follows such a solution is required, for example, in the Amdt-Eistert reaction with acid chlorides (compare Section VI,17). In a 100 ml. longnecked distilling flask provided with a dropping funnel and an efficient downward condenser, place a solution of 6 g. of potassium hydroxide in... [Pg.971]

The sulfonyl chloride group is the cure site for CSM and determines the rate and state of cure along with the compound recipe. It is less stable than the Cl groups and therefore often determines the ceiling temperature for processing. The optimum level of sulfonyl chloride to provide a balance of cured properties and processibiUty is about 2 mol % or 1—1.5 wt % sulfur at 35% Cl. It also undergoes normal acid chloride reactions with amines, alcohols, etc, to make useful derivatives (17). [Pg.493]

The methylhydrazone of acetophenone (112) underwent ready reaction with n-butyl-lithium giving the dianion (113) reaction with acid derivatives such acid chlorides or esters resulted in pyrazole (114) formation whereas with aldehydes, pyrazolines were obtained (76SC5). With dichloromethyleneiminium salts (115), 5-dimethylaminopyrazoles... [Pg.125]

It would thus appear that O acylation is the normal course of the acylation of enamino ketones. Surprisingly the enamino ketones 49 and 50 undergo reaction with acid chlorides not having an a-hydrogen (e.g., benzoyl and pivalyl chlorides) to give the products of C acylation (133). [Pg.143]

Normal Fischer esterification of tertiary alcohols is unsatisfactory because the acid catalyst required causes dehydration or rearrangement of the tertiary substrate. Moreover, reactions with acid chlorides or anhydrides are also of limited value for similar reasons. However, treatment of acetic anhydride with calcium carbide (or calcium hydride) followed by addition of the dry tertiary alcohol gives the desired acetate in good yield. [Pg.62]

The most important group of derivatives for the amino function (Fig. 7-4) is the carbamate group, which can be formed by reactions with acids, acid chlorides or acid anhydrides. A series of chlorides as 2-chloroisovalerylchloride [1], chrysanthe-moylchloride [2] and especially chloride compounds of terpene derivatives (cam-phanic acid chloride [3], camphor-10-sulfonyl chloride [4]) are used. The a-methoxy-a-trifluoromethylphenylacetic acid or the corresponding acid chloride introduced by Mosher in the 1970s are very useful reagents for the derivatization of amines and alcohols [5]. [Pg.188]

Lmine(s)—cont d primary. 916 properties of, 920 purification of. 923-924 pyramidal inversion in, 919-920 reaction with acid anhydrides, 807 reaction with acid chlorides, 803-804... [Pg.1286]

Sulfuryl chloride, reaction with pyruvic acid to yield chloropyruvic acid, 40,54... [Pg.123]

The use of AMximethylsilylimidazole has been suggested in the reaction with acid chlorides to form imidazolides.[3] In fact, the rate of conversion to imidazolides by reaction of iV-trimethylsilylimidazole with acid chlorides is remarkably rapid even at rather low temperatures. On the other hand, the preparation of the N-trimethylsilylimid-azole from imidazole requires the heating of imidazole with hexamethyldisilazane for several hours. [Pg.27]

Arenes, polyalkyl, oxidation with per-oxytrifluoroacetic acid and boron trifluoride, 48, 89, 90 Arenesulfonyl chlorides, reaction with 3-amino-3-pyrazoline, 48, 11 Aromatic aldehydes. Mesitalde-HYDE, 47, 1... [Pg.69]

U.S. consumption pattern 1999, 3 619t U.S. producers, 3 610t vapor-phase nitration of, 17 257 vinyl chloride reactions with, 25 632 world production by country, 3 611-612t Benzene-based catalyst technology, 15 500 Benzene-based fixed-bed process technology, 15 505-506 Benzene chlorination process, of phenol manufacture, 18 751 m-Benzenedisulfonic acid, 3 602 p-Benzenedisulfonic acid, 3 602 Benzene feedstock, 23 329 Benzene hexachloride, 3 602 Benzene manufacture, toluene in, 25 180-181... [Pg.93]

Table 1. Sample Results for the Modification of Polymers Through Reaction with Acid Chlorides. [Pg.63]

The reaction with carboxylic acid and acid anhydride is carried out in the presence of a small amount of concentrated sulphuric acid. The reaction is reversible, and therefore, water is removed as soon as it is formed. The reaction with acid chloride is carried out in the presence of a base (pyridine) so as to neutralise HCl which is formed during the reaction. It shifts the equilibrium to the right hand side. The introduction of acetyl (CH3CO) group in alcohols or phenols is known as acetylation. Acetylation of salicylic acid produces aspirin. [Pg.61]


See other pages where Acid chlorides, reaction with is mentioned: [Pg.954]    [Pg.954]    [Pg.103]    [Pg.50]    [Pg.37]    [Pg.153]    [Pg.737]    [Pg.1283]    [Pg.1286]    [Pg.1290]    [Pg.1299]    [Pg.1317]    [Pg.21]    [Pg.192]    [Pg.620]    [Pg.234]    [Pg.142]    [Pg.16]    [Pg.26]    [Pg.652]    [Pg.57]    [Pg.107]    [Pg.27]   
See also in sourсe #XX -- [ Pg.61 ]




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2- Stannylpyrimidines, reaction with acid chlorides

74 nitrosyl chloride, reaction with acids

Acid chloride reaction with LiAlH

Acid chloride reaction with lithium diorganocopper

Acid chloride reaction with water

Acid chloride, alcohols from reaction with Grignard reagents

Acid chloride, alcohols from reaction with amines

Acid chloride, alcohols from reaction with ammonia

Acid chloride, alcohols from reaction with carboxylate ions

Acid chloride, alcohols from reaction with water

Acid chlorides oximes, reaction with

Acid chlorides reaction with ammonia

Acid chlorides reaction with diazomethane

Acid chlorides reaction with enamines

Acid chlorides reaction with lithium aluminum hydride

Acid chlorides reactions with organometallic

Acid chlorides, reaction with alkyne anions

Acid chlorides, reaction with azide

Acid chlorides, reaction with ester enolates

Acid chlorides, reaction with hydrogen/catalyst

Acid chlorides, reaction with malonate enolates

Acid chlorides, reaction with oxazolidinones

Acid chlorides, reactions

Alcohol reaction with acid chlorides

Aluminates, tetraalkylcoupling reactions with acyl chlorides and acid anhydrides

Amine reaction with acid chlorides

Benzyl chloride, reaction with nitric acid

Borohydride, sodium reaction with acid chlorides

Carboxylic acid chlorides reaction with

Carboxylic acids reaction with oxalyl chloride

Carboxylic acids reaction with thionyl chloride

Diazomethane reaction with carboxylic acid chlorides

Enolate anions, ester reaction with acid chlorides

Gilman reagent reaction with acid chlorides

Grignard reagents, reaction with acid chlorides

Hydroxylamine, tris reaction with acid chlorides

Imines reactions with acid chlorides

Lithium azide, reaction with acid chlorides

Lithium dialkylcuprates: reaction with acid chlorides

Nitrous acid hydrogen chloride, reaction with

Organocuprates reaction with acid chlorides

Organolithium reagents reaction with acid chlorides

Organometallic reagents reactions with acid chlorides

Oxalyl chloride, reaction with acids

Phosphorus chloride reaction with carboxylic acids

Pristinamycin reaction with acid chlorides

Pyridine reaction with acid chlorides

Reaction of Organocopper Reagent with Acid Chlorides

Reaction of Potassium Chloride with Nitric Acid

Reaction with malonic acid chlorides

Reactions of Organozinc Reagents with Acid Chlorides

Reactions with Aromatic Acid Chlorides

Schiff bases reactions with acid chlorides

Selenium chloride reaction with Lewis acids

Sodium azide, reaction with acid chlorides

Sonogashira reaction, with acid chlorides

Stannanes palladium-catalyzed reactions with acid chlorides

Sulfonic acids reaction with thionyl chloride

Sulfonic acids salts, reaction with thionyl chloride

Suzuki coupling reactions aryl chlorides with phenylboronic acid

Thionyl chloride reaction with malic acid

Thionyl chloride, reaction with acids

Thionyl chloride, reaction with carboxylic acid derivs

Typical Reaction with Acid Chlorides to Form Ketones

Zinc-copper reagents reactions with acid chlorides

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