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Carbonylation vinylic halides

The considerable synthetic utility of vinylsilanes (1) is governed by the availability of suitable stereoselective routes. Most existing methodologies start from either alkynes, carbonyl compounds or vinyl halides. [Pg.98]

Palladium complexes also catalyze the carbonylation of halides. Aryl (see 13-13), vinylic, benzylic, and allylic halides (especially iodides) can be converted to carboxylic esters with CO, an alcohol or alkoxide, and a palladium complex. Similar reactivity was reported with vinyl triflates. Use of an amine instead of the alcohol or alkoxide leads to an amide. Reaction with an amine, AJBN, CO, and a tetraalkyltin catalyst also leads to an amide. Similar reaction with an alcohol, under Xe irradiation, leads to the ester. Benzylic and allylic halides were converted to carboxylic acids electrocatalytically, with CO and a cobalt imine complex. Vinylic halides were similarly converted with CO and nickel cyanide, under phase-transfer conditions. ... [Pg.565]

Vinyl halides (example 17, Table VII) were first observed by Kroper to form acrylic esters by reaction with carbon monoxide under pressure and tetracarbonylnickel in methanol at 100°C. These reactions were later shown to occur under much milder conditions. Highly stereospecific reactions were observed c/s-vinyl halides gave cis-carbonylation products and trans-vinyl halides trans-carbonylation products (example 18, Table VII). Retention of configuration of alkyl substrates in carbonylation seems to be a general feature in carbon monoxide chemistry (193a). [Pg.232]

Alkenyl trifluoromethanesulphonates (enol triflates) undergo Heck coupling with alkenes efficiently (equation 123)209a 215. This reaction is a useful variation of the use of vinyl halides not only because they are easy to prepare from the corresponding carbonyl compounds, but also because yields are good, and the stereochemistry of the triflate is largely maintained. [Pg.433]

Several examples of transition metal catalysis for the synthesis of piperidines appeared this year. Palladium catalyzed intramolecular urethane cyclization onto an unactivated allylic alcohol was described as the key step in the stereoselective synthesis of the azasugar 1-deoxymannojirimycin . A new synthetic entry into the 2-azabicyclo[3.3.1]nonane framework was accomplished through a palladium mediated intramolecular coupling of amine tethered vinyl halides and ketone enolates in moderate yields . A palladium catalyzed decarboxylative carbonylation of 5-vinyl... [Pg.253]

Scheme 6 Carbonylative Stille cross-coupling of vinyl halides, triflates, and sulfonyl chlorides. Scheme 6 Carbonylative Stille cross-coupling of vinyl halides, triflates, and sulfonyl chlorides.
CARBONYLATION OF ARYL AND VINYL HALIDES LEADING TO CARBOXYLIC ACIDS AND RELATED COMPOUNDS... [Pg.381]

A review entitled a-heteroatom-substituted 1-alkenyllithium regents carbanions and carbenoids for C-C bond formation has addressed the methods of generation of such species, illustrated the carbenoid reactivity of a-lithiated vinyl halides and vinyl ethers, and emphasized the synthetic potential of the carbanion species in asymmetric synthesis of a-hydroxy- and a-amino-carbonyl compounds. ... [Pg.368]

Enol Ethers and Esters 0-15 O-Alkylation of carbonyl compounds with diazo alkanes 0-17 Transetherification 0-20 Reaction between acyl halides and active hydrogen compounds 0-23 Transesterification 0-24 Acylation of vinylic halides 0-94 Alkylation with ortho esters 0-107 O-Acylation of 1,3-dicarbonyl compounds... [Pg.1285]

Acetylenic ketones.3 PdCl2(dppf) is generally the most satisractory catalyst for synthesis of acetylenic ketones by carbonylation of aryl and vinyl halides in the presence of a terminal acetylene. [Pg.38]

The palladium-catalyzed carbonylation of isomeric vinylic halides shows the reaction to be reasonably stereospecific and proceed with retention of the original halide structure. The degree of specificity, however, depends somewhat on the reaction conditions. Low reaction temperatures and/or excess triarylphosphine favor the stereospecific reaction (11). [Pg.327]

The reaction is highly catalytic in most instances and yields of substituted olefinic products are generally good to excellent at 100° or less. As in the related carbonylation reactions only aromatic, benzylic, and vinylic halides are useful in the reaction. Typical examples are shown in Table VIII. [Pg.337]

Free-radical-mediated four-component coupling reactions are rare. However, when an allyltin-mediated radical carbonylation is conducted in the presence of electron-deficient alkenes, four-component coupling reactions take place efficiently to give good yields of p-functionalized <5,fi-unsaturated ketones [40]. The wide scope of this four-component coupling reaction is noteworthy Primary, secondary, and tertiary alkyl bromides and iodides can be used as well as aromatic and vinylic halides. A variety of electron-deficient alkenes, such as methyl vinyl ketone, ethyl acrylate, acrolein, acrylonitrile, and vinyl sulfone, can be used as the acyl radical trap (Scheme 6.23). Fluorous allyltin compounds can also be used in four-component coupling reactions [41]. [Pg.181]


See other pages where Carbonylation vinylic halides is mentioned: [Pg.20]    [Pg.613]    [Pg.121]    [Pg.542]    [Pg.563]    [Pg.313]    [Pg.422]    [Pg.1336]    [Pg.452]    [Pg.381]    [Pg.383]    [Pg.58]    [Pg.105]    [Pg.89]    [Pg.89]    [Pg.280]    [Pg.160]    [Pg.47]    [Pg.457]    [Pg.570]    [Pg.327]    [Pg.330]    [Pg.452]    [Pg.851]    [Pg.20]    [Pg.457]    [Pg.215]    [Pg.225]    [Pg.1560]    [Pg.183]    [Pg.265]    [Pg.270]   
See also in sourсe #XX -- [ Pg.479 ]




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Carbonyl halides

Halides carbonylation

Vinyl halides

Vinylic halides

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