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Esters reaction with nucleophiles

TT-Aliylpalladium chloride reacts with a soft carbon nucleophile such as mal-onate and acetoacetate in DMSO as a coordinating solvent, and facile carbon-carbon bond formation takes place[l2,265], This reaction constitutes the basis of both stoichiometric and catalytic 7r-allylpalladium chemistry. Depending on the way in which 7r-allylpalladium complexes are prepared, the reaction becomes stoichiometric or catalytic. Preparation of the 7r-allylpalladium complexes 298 by the oxidative addition of Pd(0) to various allylic compounds (esters, carbonates etc.), and their reactions with nucleophiles, are catalytic, because Pd(0) is regenerated after the reaction with the nucleophile, and reacts again with allylic compounds. These catalytic reactions are treated in Chapter 4, Section 2. On the other hand, the preparation of the 7r-allyl complexes 299 from alkenes requires Pd(II) salts. The subsequent reaction with the nucleophile forms Pd(0). The whole process consumes Pd(ll), and ends as a stoichiometric process, because the in situ reoxidation of Pd(0) is hardly attainable. These stoichiometric reactions are treated in this section. [Pg.61]

Di-tert-butyl methylenemalonate was originally prepared by phenyl-sulfenylation of di-tert-butyl methylmalonate and thermal elimination of the related sulfoxide.8 Because methylenemalonate esters are customarily prepared by Knoevenagel-type condensation of malonic esters with formaldehyde equivalents, the considerably more convenient procedure described herein was subsequently adapted from Bachman and Tanner s study using paraformaldehyde under metal ion catalysis.39 The approximately 6% di-tert-butyl malonate accompanying the product has presented no interference in the aforementioned reactions with nucleophilic alkenes under neutral or acidic conditions, but its presence should be taken into consideration in other applications. [Pg.66]

Superficially, it might be expected that coordinated acrylic acid would undergo a similar type of hydration reaction with nucleophilic addition taking place at the /3-carbon (the acid is ester-like when coordinated). Experimentally21 hydration is not observed (Scheme 48), but both the 2- and... [Pg.476]

The value of the sulphonate esters in carbohydrate chemistry lies in their ability to undergo cleavage by reaction with nucleophiles in one of two possible ways, (i) cleavage of the S—O bond with regeneration of the hydroxyl group as a result of SN2 attack at the sulphur atom, and (ii) cleavage of the C—O bond as a result of SN2 attack at the carbon atom. [Pg.659]

Acetylenecarboxylic esters, reactions with nitrogen-containing heterocycles, 23, 263 Acetylenic derivatives of pyrazoles, synthesis and properties of, 82, 1 Acetylenic esters, synthesis of heterocycles through nucleophilic additions to, 19,297 Acid-catalyzed polymerization of pyrroles and indoles, 2, 287... [Pg.303]

DDQ (2,3-dichloro-5,6-dicyano-l,4-benzoquinone) conveniently oxidizes ketene silyl acetal (15) to give a-alkoxycarbonyl iminium salt (16)63 Subsequent reaction with nucleophiles gives amino ester derivatives, Nu-CH(NBn2)-C02R. Grignards... [Pg.8]

The resistance of the furoxan ring to chemical attack allows derivatives to be prepared via the reactions of the substituents (Section 4.22.3.4). Carboxylic acids are available by permanganate oxidation of methyl derivatives or by hydrolysis of the corresponding esters reaction with ammonia affords carboxamides. Acylfuroxans provide a source of hydroxyalkyl compounds by reduction, and oximes, for example, via nucleophilic addition. Acylation and oxidation of aminofuroxans allows the amide and nitro derivatives to be prepared. Nucleophilic displacements of nitro substituents can take place, but can be somewhat hazardous on account of the explosive nature of these compounds. Alkoxy derivatives are formed with sodium alkoxide, while reaction with thiolate anions yields sulfides, from which sulfones can be synthesized by peracid oxidation. Nitrofuroxans have also been reduced to... [Pg.423]


See other pages where Esters reaction with nucleophiles is mentioned: [Pg.310]    [Pg.177]    [Pg.1335]    [Pg.293]    [Pg.402]    [Pg.154]    [Pg.142]    [Pg.125]    [Pg.43]    [Pg.225]    [Pg.162]    [Pg.318]    [Pg.125]    [Pg.128]    [Pg.281]    [Pg.87]    [Pg.541]    [Pg.159]    [Pg.297]    [Pg.58]    [Pg.281]    [Pg.48]    [Pg.578]    [Pg.541]    [Pg.2048]    [Pg.3548]    [Pg.226]    [Pg.444]    [Pg.71]   
See also in sourсe #XX -- [ Pg.72 ]

See also in sourсe #XX -- [ Pg.68 ]




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Esters nucleophiles

Reaction with nucleophiles

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