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Vinylic halide, alkynes from

Vinyl halides from alkynes + hydrogen halides (3.20)... [Pg.366]

The chemistry of alkynes is dominated by electrophilic addition reactions, similar to those of alkenes. Alkynes react with HBr and HC1 to yield vinylic halides and with Br2 and Cl2 to yield 1,2-dihalides (vicinal dihalides). Alkynes can be hydrated by reaction with aqueous sulfuric acid in the presence of mercury(ll) catalyst. The reaction leads to an intermediate enol that immediately isomerizes to yield a ketone tautomer. Since the addition reaction occurs with Markovnikov regiochemistry, a methyl ketone is produced from a terminal alkyne. Alternatively, hydroboration/oxidation of a terminal alkyne yields an aldehyde. [Pg.279]

Vinylic halide, alkynes from, 261 S 2 reaction and, 366-367 Vinylic protons, NMR... [Pg.1318]

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]

The palladium-catalyzed annulation of alkynes by functionally-substituted aryl and vinylic halides or triflates provides a veiy convenient and efficient approach to a wide variety of heterocycles and carbocycles. This chemistry has lead to the discovery of a number of novel palladium-catalyzed processes in which the palladium migrates from one carbon to another within the molecule providing a unique way to form carbon-carbon bonds in remote locations within the same molecule. [Pg.435]

A similar approach was used by the Alcaide group [183] in the synthesis of tricyclic (3-lactams 6/1-391 from 6/1-390 (Scheme 6/1.99). In this domino process the primarily obtained it-allyl-Pd-complex reacts with the N-nucleophile of the urethane moiety to form a C-N-bond and a vinyl halide. The final step is then an intramolecular Heck-type reaction of the vinyl halide with the alkyne moiety and re-... [Pg.421]

The result of the retrosynthetic analysis of rac-lO is 2-hydroxyphenazine (9) and the terpenoid unit rac-23, which may be linked by ether formation [29]. The rac-23 component can be dissected into the alkyl halide rac-24 and the (E)-vinyl halide 25. A Pd(0)-catalyzed sp -sp coupling reaction is meant to ensure both the reaction of rac-24 and 25 and the ( )-geometry of the C-6, C-7 double bond. Following Negishi, 25 is accessible via carboalumination from alkyne 27, which might be traced back to (E,E)-farnesyl acetone (28). The idea was to produce 9 in accordance with one of the methods reported in the literature, and to obtain rac-24 in a few steps from symmetrical 3-methyl-pentane-1,5-diol (26) by selective functionalization of either of the two hydroxyl groups. [Pg.85]

Many of the synthetic routes parallel those used to prepare alkene complexes c platinum(II). Replacement of chloride ion in PtClJ- by a water soluble alkyne is a frequentl used method (equation 266), 809 812 or the reaction can be assisted by the use of a silver salt t facilitate halide displacement (equation 267).813 With hexafluorobutyne-2 the five-coordinat adduct can be isolated before it converts into the vinyl complex (89 equation 268).814 Alkyne displace alkenes from platinum(ll) complexes. [Pg.414]

Before discussing examples of the reactions, it should be pointed out that most types of vinylic halides used in this reaction are easily available. The UV-catalyzed addition of HBr to terminal acetylenes forms the 1-bromo-l-alkenes. The cis isomer is formed almost exclusively if the addition is carried out at dry ice temperature. The 2-bromo or 2-iodo-l-alkenes are obtained from reacting aqueous hydrogen halides with alkynes. The 2-substituted-1-bromo-l-alkenes are available by the bromination-base dehydrobromination reactions. [Pg.217]

Acetylenic zinc reagents are readily accessible from 1-alkynes by a deprotonation-transmetallation sequence, and consequently have been successfully used to couple with vinyl halides in many cases (see equation 81), including butadiynyl ones161. Among these, coupling reactions with vinyl bromides have been used in the stereoselective synthesis of enediynes and applied to the synthesis of trienic natural products162. [Pg.1303]

New reports of organozirconium-organic halide cross-coupling reactions have almost completely stopped. Nevertheless, the palladium-catalyzed cross-coupling of vinyl zir-conocenes (from alkyne hydrozirconation) with vinyl halides has been employed in the synthesis of the lipid isobutylamide natural product anacyclin (equation 98). ... [Pg.1304]

A related three-component coupling has also been performed with a halide as a nucleophile to lead to ( )- or (Z)-vinyl halides, depending on the conditions and on the substitution of the alkynes [60-62]. Indeed, ( )-vinyl chlorides were preferentially obtained, from a large variety of alkynes and enones, by using CpRuCl(COD) with stannic chloride as a cocatalyst in a polar solvent such as DMF and with ammonium chloride salts [62] (Eq. 45). [Pg.20]

In some cases, we can generate a carbon-carbon triple bond by eliminating two molecules of HX from a dihalide. Dehydrohalogenation of a geminal or vicinal dihalide gives a vinyl halide. Under strongly basic conditions, a second dehydrohalogenation may occur to form an alkyne. [Pg.403]

The authors point out that, unlike vinyl halides, the vinyl chloronium ion 23a could hardly show double bond character in the C-Cl bond because of unfavourable charge repulsion in 23b. The unreactivity of vinyl halides may therefore primarily be a consequence of the strength of the a bond to the sp2, carbon. However if opening of 23a is assumed to be due to nucleophilic attack of the solvent (or any other nucleophile) to either C5 or C2, the greater amount of shifted products obtained from alkynes than from alkenes is a direct consequence of the relative facility of nucleophilic attack at the sp3 carbon and sp% carbon (Rappoport, 1969 Modena, 1971). [Pg.200]

E2 elimination from vinyl halides how to make alkynes... [Pg.493]

Vinyl bromides can themselves be made by elimination reactions of 1,2-dibromoalkanes. Watch what happens when 1,2-dibromopropane is treated with three equivalents of K NLi first, elimination to the vinyl halide then, elimination of the vinyl halide to the alkyne. The terminal alkyne is amply acidic enough to be deprotonated by R2NU, and this is the role of the third equivalent. Overall, the reaction makes a lithiated alkyne (ready for further reactions) from a fully saturated starting material. This may well be the first reaction you have met that makes an alkyne from a starling material that doesn t already contain a triple bond, making an alkyne from 1,2-dibromopropane... [Pg.494]

The reaction was applied to the formation of arylcopper used for homocoupling and coupling reactions, which have already been described in Section IV.B.2. In addition, it was established that the simple use of copper(I) salts in polar solvents permitted the transmetallation from tin to copper. The transient vinylcopper reagent was subjected to various intramolecular reactions such as coupling with vinyl halides , addition to a, /S-unsaturated ketones , to a, /3-unsaturated esters and addition to a, /3-alkynic esters . In addition to copper(I) halides, the reaction can be mediated by copper(I) cyanide and... [Pg.1378]

The Suzuki reaction was a key step in the synthesis of bombykol, the sex pheromone of the female silkworm moth, and humulene, a lipid isolated from hops, as shown in Figure 26.1. The synthesis of humulene illustrates that an intramolecular Suzuki reaction can form a ring. Sample Problem 26.2 shows how a conjugated diene can be prepared from an alkyne and vinyl halide using a Suzuki reaction. [Pg.1008]


See other pages where Vinylic halide, alkynes from is mentioned: [Pg.30]    [Pg.20]    [Pg.387]    [Pg.82]    [Pg.446]    [Pg.452]    [Pg.105]    [Pg.159]    [Pg.16]    [Pg.231]    [Pg.615]    [Pg.61]    [Pg.183]    [Pg.579]    [Pg.251]    [Pg.10]    [Pg.300]    [Pg.960]    [Pg.5648]    [Pg.387]    [Pg.950]    [Pg.820]   
See also in sourсe #XX -- [ Pg.263 ]

See also in sourсe #XX -- [ Pg.263 ]

See also in sourсe #XX -- [ Pg.290 ]

See also in sourсe #XX -- [ Pg.317 ]




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