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Imides, reaction with Grignard reagents

W-(Methoxycarbonyl)triphenylphosphine imide reacts with methyl trifluoro-pyruvate to form methyl N-methoxycarbonyl 2 imino-3,3,3 trifluoropropionate m 95% yield This convenient building block easily adds nucleophiles such as Grignard reagents without competing side reactions at the ester group to form trifluoromethylated ammo acids [3.S] (equation 31)... [Pg.633]

A few 6- and 8-cyanopurines have been prepared and undergo characteristic nitrile addition reactions rather readily. Thus, alkaline hydrolysis produces carboxamides, then carboxylic acids, alcoholysis leads to imidates, ammonolysis to amidines, hydrazinolysis to amidhydrazines, hydroxylamine to amidoximes, and hydrogen sulfide to thioamides. Acid hydrolysis tends to give the decarboxylated acid derivative. Reduction either by sodium-ethanol or, preferably, by catalytic hydrogenation affords aminoalkylpurines and addition of Grignard reagents produces, in the first place, acylpurines. As with aldehydes, most of the compounds examined have been relatively non-polar derivatives. Table 28 lists some reactions and relevant literature. [Pg.548]

The reaction has been shown to be of very broad scope with a multitude of nucleophiles Nu such as imides.23,24,29,32,33,36,37,42 amines,10,32 cyanide,25,32 hydroxide,10,32 alkox-ide,10,26,32 electron-rich isocyclic or heterocyclic aromatic compounds,28 carboxamides,31 lactams,31 ureas,31 sulfonamides,31 cyanate,31 formate (to give products with Nu = H),34 C-H acidic compounds,35 hydrazines and hydrazides,38 and sulfinates.38 The amino group NR R2 of cyclopropane-1,1-diamines and the nucleophile Nu in bicycles 8, 9 or 12, respectively, can be easily replaced with other nucleophiles Nu, such as water,10,32,33 alkoxide,10,32-34,42 Grignard compounds,27,42 amines,29,30,36,37,42,43 cyanide,29,33,42,44 hydride,34,42,44 and C-H acidic compounds39-41,43,44 (see Section 5.2.1.). Therefore, it is currently the most important method for the preparation of substituted bicyclic cyclopropylamines. The toxic and costly reagent methyl fluorosulfate can be avoided in a modified synthetic route, which instead of the fluorosulfate 5 proceeds via the corresponding tetraphenylborate, hexafluorophosphate, or (most conveniently) via the tosylate.23 The different steps of the method can often be combined in a one-pot procedure. Results are summarized in Table 3. [Pg.918]


See other pages where Imides, reaction with Grignard reagents is mentioned: [Pg.185]    [Pg.774]    [Pg.812]    [Pg.343]    [Pg.131]    [Pg.131]    [Pg.774]    [Pg.203]    [Pg.136]    [Pg.69]    [Pg.251]    [Pg.812]    [Pg.131]    [Pg.1302]    [Pg.774]    [Pg.263]    [Pg.50]    [Pg.136]    [Pg.774]    [Pg.435]    [Pg.1012]    [Pg.71]    [Pg.68]    [Pg.340]    [Pg.372]    [Pg.591]    [Pg.69]    [Pg.117]    [Pg.284]    [Pg.172]    [Pg.151]   
See also in sourсe #XX -- [ Pg.77 , Pg.216 ]




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Grignard reagents reactions

Imidates reactions

Imides, reactions

Reaction with Grignard reagents

Reaction with imides

With Grignard Reagents

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