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Nucleophilic addition sulfur nucleophiles

The additional sulfur atom seems to reduce the reactivity of the S—Cl bond to nucleophilic attack cmly to a slight extent. Hydrolysis yields, here too, the symmetrically disubstituted iV,A -bis(trifluoromethylmer-captosulfenyl) urea ... [Pg.161]

Additionally, sulfur and perfluoroalkyl functionalities can both be present in the same starting molecule. For example, nucleophilic attack of trifluoromethylated thiolate 128 on phenacyl bromides 129 followed by spontaneous aldol cyclization gave 5-substituted 2-trifluoromethylthiophene 130 in yields of 20-60 % [74], 4,4,4-Trifluoro-3-(4-nitrobenzylthio)-2-phenylbut-2-enal 132 obtained from trifluo-rosubstituted p-chlorovinylaldehyde 131 afforded the trifluoromethylthiophene product 133 in 66 % yield on heating in N,N-dimethylformamide [75],... [Pg.251]

Addition of Carbon, Oxygen, Nitrogen, and Sulfur Nucleophiles... [Pg.497]

This addition is general, extending to nitrogen, oxygen, carbon, and sulfur nucleophiles. This reactivity of the quinone methide (23) is appHed in the synthesis of a variety of stabili2ers for plastics. The presence of two tert-huty groups ortho to the hydroxyl group, is the stmctural feature responsible for the antioxidant activity that these molecules exhibit (see Antioxidants). [Pg.61]

Cycloahphatics capable of tertiary carbocation formation are candidates for nucleophilic addition of nitriles. HCN in strong sulfuric acid transforms 1-methyl-1-cyclohexanol to 1-methyl-1-cyclohexylamine through the formamide (47). The terpenes pinene (14) [2437-95-8] and limonene [5989-27-5] (15) each undergo a double addition of HCN to provide, after hydrolysis, the cycloahphatic diamine 1,8-menthanediamine (16) (48). [Pg.210]

The chemical production of aminophenols via the reduction of nitrobenzene occurs in two stages. Nitrobenzene [98-95-3] is first selectively reduced with hydrogen in the presence of Raney copper to phenylhydroxylamine in an organic solvent such as 2-propanol (37). With the addition of dilute sulfuric acid, nucleophilic attack by water on the aromatic ring of /V-phenylhydroxylamine [100-65-2] takes place to form 2- and 4-aminophenol. The by-product, 4,4 -diaminodiphenyl ether [13174-32-8] presumably arises in a similar manner from attack on the ring by a molecule of 4-aminophenol (38,39). Aniline [62-53-3] is produced via further reduction (40,41). [Pg.311]

The importance of steric effects in determining the oxidation state of the product can be illustrated by a thioether linkage, eg (57). If a methyl group is forced to be adjacent to the sulfur bond, the planarity required for efficient electron donation by unshared electrons is prevented and oxidation is not observed (48). Similar chemistry is observed in the addition of organic nitrogen and oxygen nucleophiles as well as inorganic anions. [Pg.410]

The action of sulfur nucleophiles like sodium bisulfite and thiophenols causes even pteridines that are unreactive towards water or alcohols to undergo covalent addition reactions. Thus, pteridin-7-one smoothly adds the named S-nucleophiles in a 1 1 ratio to C-6 (65JCS6930). Similarly, pteridin-4-one (73) yields adducts (74) in a 2 1 ratio at C-6 and C-7 exclusively (equation 14), as do 4-aminopteridine and lumazine with sodium bisulfite. Xanthopterin forms a 7,8-adduct and 7,8-dihydropterin can easily be converted to sodium 5,6,7,8-tetrahydropterin-6-sulfonate (66JCS(C)285), which leads to pterin-6-sulfonic acid on oxidation (59HCA1854). [Pg.287]


See other pages where Nucleophilic addition sulfur nucleophiles is mentioned: [Pg.204]    [Pg.152]    [Pg.152]    [Pg.6]    [Pg.261]    [Pg.363]    [Pg.411]    [Pg.22]    [Pg.426]    [Pg.150]    [Pg.286]    [Pg.295]    [Pg.42]    [Pg.140]   


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Addition of Carbon, Oxygen, Nitrogen, and Sulfur Nucleophiles

Addition of Sulfur Nucleophiles

Conjugate addition of sulfur nucleophiles

Nucleophiles, sulfur

Nucleophilic addition reactions with sulfur nucleophiles

Nucleophilic reactions conjugate additions, sulfur/selenium

Nucleophilic sulfur

Sulfur nucleophile

Sulfur nucleophiles addition

Sulfur nucleophiles, addition with

The Addition of Sulfur Nucleophiles

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