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Vinyl halides, hydrolysis

Palladium-mediated addition of silyl stannane reagents to alkynyl ethers has been employed for the synthesis of aliphatic acyl silanes in very good yields via the intermediate a-alkoxy-/J-stannyl vinyl silanes (enol ethers of acyl silanes)82. In a second palladium-catalysed step, the vinyl stannane moiety could be coupled to suitable halides before hydrolysis to the acyl silanes with trifluoroacetic acid (Scheme 11). [Pg.1611]

Although poly(vinyl fluoride) resembles PVC in its low water absorption, resistance to hydrolysis, insolubility in common solvents at room temperature and a tendency to split off hydrogen halides at elevated temperatures, it has a much greater tendency to crystallise. This is because the fluorine atom (c.f. the chlorine atom) is sufficiently small to allow molecules to pack in the same way as polythene. [Pg.376]

Electrochemical reduction of oxazolinium salts 36 gives the anions 37, which add efficiently to alkyl halides or, in the presence of McsSiCl, to methyl acrylate, methyl vinyl ketone, and acrylonitrile. Simple acid hydrolysis then gives the ketone products 38 and 39, and this method is quite general since the starting salts are readily prepared from carboxylic acids, R C02H (87TL4411). [Pg.94]

Dihydropyrans 88-90 are deprotonated at the vinylic position adjacent to oxygen by t-BuLi and the resulting anions add readily to alkyl halides, aldehydes, and ketones. Subsequent acid hydrolysis provides the products expected from reaction of an oj-functionalized pentanoyl anion 88 acts as HOCH2(CH2)3CO , 89 as 0CH(CH2)3C0 , and 90 as MeCO(CH2)3CO (77TL4187 81T3997). [Pg.101]

The metalation of vinyl ethers, the reaction of a-lithiated vinyl ethers obtained thereby with electrophiles and the subsequent hydrolysis represent a simple and efficient method for carbonyl umpolung. Thus, lithiated methyl vinyl ether 56 and ethyl vinyl ether 54, available by deprotonation with t- or n-butyllithium, readily react with aldehydes, ketones and alkyl halides. When the enol ether moiety of the adducts formed in this way is submitted to an acid hydrolysis, methyl ketones are obtained as shown in equations 72 and 73 . Thus, the lithiated ethers 56 and 54 function as an acetaldehyde d synthon 177. The reactivity of a-metalated vinyl ethers has been reviewed recently . [Pg.885]

Aldol group transfer polymerization of ferf-butyldimethylsilyl vinyl ether [62] was initiated by pendant aldehyde functions incorporated along a poly(methyl methacrylate) (PMMA) backbone [63]. This backbone was a random copolymer prepared by group transfer polymerization of methyl methacrylate (MMA) and acetal protected 5-methacryloxy valeraldehyde. After deprotection of the aldehyde initiating group, polymerization proceeded by activation with zinc halide in THF at room temperature. The reaction led to a graft copolymer with PMMA backbone and poly(silyl vinyl ether) or, upon hydrolysis of the ferf-butyldimethylsilyl groups, poly(vinyl alcohol) branches. [Pg.43]

Metallated 1-ethoxy-1,3-dienes 697 and 712, obtained from the corresponding acetals by means of the LICKOR base, have been treated with alkyl halides, epoxides, carbonyl compounds, carbon dioxide and carboxylic esters affording ( )-l-substituted 1-ethoxy-1,3-dienes and, after hydrolysis, a,P-unsaturated carbonyl compounds1007-1010 (Scheme 186). Intermediates 697 and 712 have been transformed into the corresponding vinyl stan-nanes, which were submitted to Stille couplings with iodobenzene and benzoyl chloride823. [Pg.255]

The mechanisms of two other reactions described in Sect. 2.2 involve slow proton transfer to unsaturated carbon. The general acid catalysed cleavage of vinyl mercuric halides [42, 50] for example, allyl mercuric iodide, CH2=CHCH2HgI (XXII), gives Bronsted exponents around 0.7. Linear Bronsted plots are obtained with carboxylic acid catalysts but, as observed in other A—SE 2 reactions, general acids of different structural types (for example, hydronium ion or bisulphate ion) show substantial deviations. Bronsted catalysis of the hydrolysis of diazo compounds (N2 =CR X) has been studied by the groups of Albery and Kreevoy. With... [Pg.163]

Allyl-type halides are hydrolyzed readily to olefinic alcohols. The difference in reactivity between allyl and vinyl halogen atoms is well illustrated by the hydrolysis of 1,3-dichloropropene, C1CH = CHCH,C1, to 3-chloro-2-propen-l-ol, C1CH = CHCH,0H (76-81%). ... [Pg.90]

I otodemercuration as the second step of intramolecular C-vinylation induced by mercury(II) salts has been recently described examples are in equations (5) and (6). " A large enhancement of the hydrolysis rate was observed when Nal was added to the acid solution.This effect can be attributed to halide-catalyzed protodemercuration, an established method for cleavage of arylmercurials. ... [Pg.851]

Hydrolysis of the reaction mixture afforded 63 in 80% yield as a single cis diastereomer, and the formation of cyclic organozinc bromide was checked by iodinolysis, by coupling reactions with vinyl iodides in the presence of a catalytic amount of Pd(PPh3)4, or by reaction with allyl halides after transmetallation of the organozinc bromide into an organocopper reagent [60] (Scheme 7-53). [Pg.430]


See other pages where Vinyl halides, hydrolysis is mentioned: [Pg.222]    [Pg.138]    [Pg.396]    [Pg.95]    [Pg.1678]    [Pg.82]    [Pg.469]    [Pg.43]    [Pg.76]    [Pg.1291]    [Pg.396]    [Pg.570]    [Pg.21]    [Pg.141]    [Pg.423]    [Pg.716]    [Pg.1313]    [Pg.429]    [Pg.570]    [Pg.226]    [Pg.95]    [Pg.772]    [Pg.476]    [Pg.754]    [Pg.1300]    [Pg.1931]    [Pg.85]   
See also in sourсe #XX -- [ Pg.463 ]




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Hydrolysis halides

Vinyl halides

Vinylic halides

Vinylic halides hydrolysis

Vinylic halides hydrolysis

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