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Amination reactions phase-transfer catalysis

The reaction with ammonia or amines, which undoubtedly proceeds by the SnAt mechanism, is catalyzed by copper and nickel salts, though these are normally used only with rather unreactive halides. This reaction, with phase-transfer catalysis, has been used to synthesize triarylamines. Copper ion catalysts (especially cuprous oxide or iodide) also permit the Gabriel synthesis (10-61) to be... [Pg.864]

Phase-transfer catalysis is a special type of catalysis. It is based on the addition of an ionic (sometimes non-ionic like PEG400) catalyst to a two-phase system consisting of a combination of aqueous and organic phases. The ionic species bind with the reactant in one phase, forcing transfer of this reactant to the second (reactive) phase in which the reactant is only sparingly soluble without the phase-transfer catalyst (PTC). Its concentration increases because of the transfer, which results in an increased reaction rate. Quaternary amines are effective PTCs. Specialists involved in process development should pay special attention to the problem of removal of phase-transfer catalysts from effluents and the recovery of the catalysts. Solid PTCs could diminish environmental problems. The problem of using solid supported PTCs seems not to have been successfully solved so far, due to relatively small activity and/or due to poor stability. [Pg.8]

Heteropoly acids can be synergistically combined with phase-transfer catalysis in the so-called Ishii-Venturello chemistry for oxidation reactions such as oxidation of alcohols, allyl alcohols, alkenes, alkynes, P-unsaturated acids, vic-diols, phenol, and amines with hydrogen peroxide (Mizuno et al., 1994). Recent examples include the epoxidations of alkyl undecylenates (Yadav and Satoskar, 1997) and. styrene (Yadav and Pujari, 2000). [Pg.138]

Aromatic nitroso compounds combine with primary arylamines in glacial acetic acid to give symmetrical or unsymmetrical azo compounds (the Mills reaction).554 A wide variety of substituents may be present in both aryl groups. Unsymmetrical azo compounds have also been prepared by the reaction between aromatic nitro compounds ArN02 and N-acyl aromatic amines Ar NHAc.555 The use of phase transfer catalysis increased the yields. [Pg.638]

Various allylic amines and protected allylic alcohols were tested using different cyclodextrins. Although only low to moderate enantioselectivity was obtained, the method demonstrated for the first time an enantioselective inverse phase-transfer catalysis hydration reaction via an oxymercuration-demercuration process. [Pg.157]

The reaction of ethyl 2-phenyl-4//-furo[3,2-/>]pyrrole-5-carboxylate (94) with 2-nitrobenzyl-oromide afforded ethyl 4-(2-nitrobenzyl)-2-phenylfuro[3,2-6]pyrrole-5-carboxylate (269) under conditions of phase transfer catalysis by utilization of sodium carbonate and tetrabutylammonium bromide. This product (269) was hydrogenated using palladium-on-charcoal catalyst to give the amine (270), which cyclized in the presence of 2-hydroxypyridine to give 2-phenylfuro[2, 3 4,5]pyrrolo[2,l-c]benzo[l,4]diazepin-l 1-one (271) <92CCC1487>. [Pg.32]

A mechanistic limitation of the Ritter reaction is that, while N-alkylformamides (and thence primary amines) are readily available, further direct substitution on nitrogen is mled out. However, simple A-al-kylation of the formamide may be performed utilizing phase-transfer catalysis. This provides a conven-... [Pg.266]

Phase-transfer catalysis is often used in the first approach. Concentrated aqueous alkali metal hydroxides and a quaternary ammonium salt or a tertiary amine as a catalyst (liquid-liquid system) are generally used. Due to the high acidity of bromoform and high reactivity of dibromocarbene, a solid-liquid variant of phase-transfer catalysis, which allows the reaction to be performed at low temperatures, is utilized relatively frequently. [Pg.704]


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See also in sourсe #XX -- [ Pg.393 , Pg.394 ]




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Amination reactions catalysis

Amines catalysis

Phase amines

Phase transfer catalysis amines

Phase-transfer reactions

Phase-transfer reactions catalysis

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