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Vinylic halide

Treatment of vinyl halides with strong base gives acetylenes. [Pg.117]

Alkenyl halides are also re ferred to as vinylic halides... [Pg.327]

Vinylic halides and aryl halides do not form carbocations under conditions of the Friedel-Crafts reaction and so cannot be used in place of an alkyl halide or an acyl halide... [Pg.511]

Unlike elimination and nucleophilic substitution reactions foimation of oigano lithium compounds does not require that the halogen be bonded to sp hybndized carbon Compounds such as vinyl halides and aiyl halides m which the halogen is bonded to sp hybndized carbon react m the same way as alkyl halides but at somewhat slowei rates... [Pg.590]

The order of halide reactivity is I > Br > Cl > F and alkyl halides are more reac tive than aryl and vinyl halides Indeed aryl and vinyl chlorides do not form Grignard reagents m diethyl ether When more vigorous reaction conditions are required tetrahy drofuran (THF) is used as the solvent... [Pg.591]

A key step in the reaction mechanism appears to be nucleophilic attack on the alkyl halide by the negatively charged copper atom but the details of the mechanism are not well understood Indeed there is probably more than one mechanism by which cuprates react with organic halogen compounds Vinyl halides and aryl halides are known to be very unreactive toward nucleophilic attack yet react with lithium dialkylcuprates... [Pg.604]

Preparation of alkanes using lithium di alkylcuprates (Section 14 11) Two alkyl groups may be coupled together to form an alkane by the reaction of an alkyl hal ide with a lithium dialkylcuprate Both alkyl groups must be primary (or meth yl) Aryl and vinyl halides may be used in place of alkyl halides... [Pg.617]

The reaction is of the 8 2 type and works best with primary and secondary alkyl halides Elimination is the only reaction observed with tertiary alkyl halides Aryl and vinyl halides do not react Dimethyl sulfoxide is the preferred solvent for this reaction but alcohols and water-alcohol mixtures have also been used... [Pg.808]

The carbon-halogen bonds of aryl halides are both shorter and stronger than the carbon-halogen bonds of alkyl halides In this respect as well as m their chemical behavior they resemble vinyl halides more than alkyl halides A hybridization effect seems to be responsible because as the data m Table 23 1 indicate similar patterns are seen for both carbon-hydrogen bonds and carbon-halogen bonds An increase m s... [Pg.971]

PVF is more thermally stable than other vinyl halide polymers. High molecular weight PVF is reported to degrade in an inert atmosphere, with concurrent HF loss and backbone cleavage occurring at about 450°C (71,72). In air, HF loss occurs at about 350°C, followed by backbone cleavage around 450°C. [Pg.380]

SENARY Conjugated Aldehyde Synthesis Formation ot polyunsaturated aldehydes trom vinyl halides and enamlnoaldehydes... [Pg.31]

Cross-coupling reactions of aromatic or vinylic halides and olefins catalyzed by palladium. [Pg.138]

Oleno synthesis via Pd catalyzed vinyl coupling o( vinyl borates with vinyl halides... [Pg.376]

This procedure illustrates a general method for the preparation of alkenes from the pal 1 adium(Q)-cata1yzed reaction of vinyl halides with organo-lithium compounds, which can be prepared by various methods, including direct regioselective lithiation of hydrocarbons. The method is simple and has been used to prepare a variety of alkenes stereoselectively. Similar stoichiometric organocopper reactions sometimes proceed in a nonstereoselective... [Pg.45]

Unsymmetrical trans vinyl halides have been prepared from acetylenic alcohols by Corey and co-workers (as illustrated in the accompanying formulation) in connection with their synthesis of farnesol and Gecropia juvenile hormone. Several syntheses of vinyl halides (with... [Pg.29]

Reactions of carbon nucleophiles with organohalogen compounds have great diversity for the construction of now carbon-carbon bonds. The intriguing synthon, ethoxyethynylsodium, is generated and alkylated in 1-ETHOXY-1-BUTANE. Following an alkylation of propynylsodium, a vinyl halide is generated in a stereoselective manner... [Pg.129]

Addition of hydrogen halides to simple allenes initially gives the vinyl halide, and if the second double bond reacts, a geminal dihalide is formed. " ... [Pg.377]

The first method involves generation of an unstable vinyllithium denvative at low temperatures from the corresponding vinyl halide or 1-hydroalkene Addition of zinc chloride and warming to room temperature gives the stable vinyl zinc reagent [100, lOI, 102, 103] (equations 69-72)... [Pg.686]

Table 4. Preparation of Fluorinated Vinylzinc Reagents from (F)-Vinyl Halides and Zinc Metal [110]... Table 4. Preparation of Fluorinated Vinylzinc Reagents from (F)-Vinyl Halides and Zinc Metal [110]...
Vinyl Halide Solvent Zinc Reagent Yield (%]... [Pg.689]

Tnfluorometltylation of aryl, alkenyl, and alkyl halides can be accomplished by heating methyl fluorosulfonyldifluoroacetate and the appropriate halide precursor with copper(I) iodide at 60-80 °C in DMF [27 7] (equation 145). Similar trifluoromethylations of aryl, benzyl, and vinyl halides can be carried out with fluorosulfonyldifluoromethyl iodide and copper metal in DMF at 60-80 °C [2 75] (equation 146). [Pg.705]

Because the vinylzinc and vinylcadmium reagents can be prepared directly from the vinyl halides (I, Br) with zinc or cadmium metal, this route avoids cross coupling processes and provides a one-pot in situ preparation of perfluo-rovinylcopper compounds Table 7 shows examples of this method of preparation of vinylcopper reagents from the indicated cadmium or zinc reagent [145]... [Pg.710]

These will not react with benzene under Friedel-Crafts conditions Vinylic halide Aryl halide... [Pg.511]

Nucleophilic substitution by cyanide ion (Sections 8.1, 8.13) Cyanide ion is a good nucleophile and reacts with alkyl halides to give nitriles. The reaction is of the S m2 type and is limited to primary and secondary alkyl halides. Tertiary alkyl halides undergo elimination aryl and vinyl halides do not react. [Pg.867]


See other pages where Vinylic halide is mentioned: [Pg.117]    [Pg.20]    [Pg.99]    [Pg.511]    [Pg.867]    [Pg.78]    [Pg.30]    [Pg.372]    [Pg.695]    [Pg.701]    [Pg.711]   
See also in sourсe #XX -- [ Pg.330 ]

See also in sourсe #XX -- [ Pg.240 , Pg.681 ]

See also in sourсe #XX -- [ Pg.10 ]

See also in sourсe #XX -- [ Pg.585 ]

See also in sourсe #XX -- [ Pg.232 ]

See also in sourсe #XX -- [ Pg.39 , Pg.49 ]

See also in sourсe #XX -- [ Pg.479 , Pg.480 ]




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Acid halides vinylic acylations

Addition Reactions to Vinyl Halides

Alkenes => vinyl halides

Alkenes reductive coupling with vinyl halides

Alkyl halides vinyl Grignard reagents

Alkyl halides vinyl carbanions

Alkyl halides vinyl substitutions

Alkyl metals, vinyl halide cross-coupling

Alkyne vinylic halides from

Allyl and Vinyl Halides

Aluminum, alkenylalkylation with vinyl halides

Aromatic and Vinylic halides

Aryl halides vinyl substitutions

Aryl halides vinylation

Aryl/vinyl halides

Aryl/vinyl halides with terminal acetylenes

Azides, vinyl via 2-azido halides

Bond dissociation energy vinyl halides

Carbanions vinyl halides

Carbon nucleophiles vinyl halide/triflates

Carbon-heteroatom coupling vinyl halide reactions

Carbon-metal bond formation vinyl halide reactions

Carbon-metal bonds vinyl halide reactions

Carbon-metal bonds vinyl halides and triflates

Carbonylation aryl/vinyl halides

Carbonylation vinylic halides

Carboxylic acid halides vinyl substitutions

Chain with vinyl halides

Chiral vinyl halide

Chiral vinyl halide aldehyde

Chiral vinyl halide coupling reaction

Cobalt, octacarbonyldicatalyst carbonylation of aryl and vinyl halides

Copper chloride with vinylic halides

Cross-Coupling of Vinyl Halides with Amides or Carbamates

Cyanocuprates, reactions with vinyl halides

Dienes from vinyl halides

Direct Oxidative Addition of Reactive Zinc to Functionalized Alkyl, Aryl, and Vinyl Halides

E2 elimination from vinyl halides how to make alkynes

Electrochemical Vinylation of Aryl Halides using Vinylic Acetates

Electrophilic addition vinyl halides

Elimination reactions of vinyl halides

Elimination reactions vinyl halides

Enolates vinyl halides

Ethers, vinyl with alkyl halides

From organotellurolate anions and activated vinylic halides

From organyltellurenyl halides and vinylic Grignard reagents

From vinyl halides

From vinylic tellurolate anions and alkyl halides

Halide-vinyl polymers, degradation

Halides (continued vinyl

Halides palladium-catalyzed vinylation

Halides vinyl ethers

Halides vinyl substitutions

Halides vinyl thioethers

Halides vinyl, reductive coupling

Halides vinylic, substitution reactions

Halides, vinyl => ketones

Halides, vinyl from aldehydes

Halides, vinyl from alkynes

Halides, vinyl from allenes

Halides, vinyl from halide exchange

Halides, vinyl from ketones

Halides, vinyl from organometallic compounds

Halides, vinyl hydrolysis

Halides, vinyl reaction with alkynes

Halides, vinyl reaction with organolithium

Halides, vinyl reagents

Heck coupling reactions vinyl ethers with aryl halides

Hydrogenolysis vinyl halides

Liang vinyl halide Fischer indole protocol

Low reactivity of aryl and vinyl halides

Mechanism vinyl halides

Metal groups aryl/vinyl halide reactions

Metal groups vinyl halide reactions

Metal groups vinyl halide/triflates

Natural product synthesis aryl/vinyl halides

Negishi Cross-Coupling of Vinyl and Aryl Organozinc Halides

Palladium, tetrakis catalyst vinyl halides

Palladium-Catalyzed Carbonylation of Aryl and Vinylic Halides

Phosphination vinyl halides

Photochemically Induced Substitution of Vinyl and Aryl Halides

Platinum oxide vinyl halides

Poly(vinyl halides)

Polynuclear aromatic halides vinyl substitution

Reaction mechanism vinyl halide cross-coupling

Reaction with vinylic halide

Reagents vinyl halide/triflates

Retention alkylation of vinylic halides

VINYL HALIDE POLYMER

Vinyl Halides and Dihaloethanes as Synthetic Equivalents of Acetylene

Vinyl esters halides

Vinyl glycosides glycosyl halides

Vinyl halide addition

Vinyl halide copolymers

Vinyl halide dehydrohalogenation

Vinyl halide nucleophilic vinylic substitution

Vinyl halides

Vinyl halides

Vinyl halides Magnesium iodide

Vinyl halides Sonogashira reactions, copper® iodide

Vinyl halides a-substituted

Vinyl halides acetylenes

Vinyl halides alkynes

Vinyl halides alkynylation

Vinyl halides arene alkylation

Vinyl halides carbon-silicon bonds

Vinyl halides carbon-transition metal bonds

Vinyl halides carbonylation

Vinyl halides catalysts

Vinyl halides chromium salts

Vinyl halides coupling reaction with alkenes

Vinyl halides coupling reactions

Vinyl halides coupling reactions with

Vinyl halides cross-coupling

Vinyl halides cross-coupling reactions

Vinyl halides cross-coupling with zincs

Vinyl halides cross-coupling, palladium-catalyzed

Vinyl halides cyclocarbonylation

Vinyl halides failure

Vinyl halides formation of a-methylene lactones

Vinyl halides formation of esters

Vinyl halides from alkynes reacting with acids

Vinyl halides homocoupling reactions

Vinyl halides hydrosilylation

Vinyl halides intramolecular carbopalladation

Vinyl halides iodide

Vinyl halides metal-catalyzed cross-coupling, terminal

Vinyl halides metathesis

Vinyl halides migratory insertion reactions

Vinyl halides natural products synthesis

Vinyl halides nitrile synthesis

Vinyl halides organoboranes

Vinyl halides organocuprates

Vinyl halides organometallic reagents

Vinyl halides oxidative rearrangement

Vinyl halides palladium

Vinyl halides palladium complexes

Vinyl halides properties

Vinyl halides pyrolysis

Vinyl halides reaction scope

Vinyl halides reaction with lithium dialkylcuprates

Vinyl halides reactions

Vinyl halides reactivity

Vinyl halides reductive elimination reactions

Vinyl halides structure

Vinyl halides synthesis

Vinyl halides with Grignard reagents

Vinyl halides with carbonyls

Vinyl halides with organocopper compounds

Vinyl halides with organotin compounds

Vinyl halides, copper catalyzed amidation

Vinyl halides, cross-coupling with

Vinyl halides, cross-coupling with alkynes

Vinyl halides, elimination

Vinyl halides, from vinylsilanes

Vinyl halides, reaction with ketoximes

Vinyl halides, reactions with phosphine

Vinyl halides, reduction

Vinyl halides, structural features

Vinyl magnesium halide

Vinyl organozinc halides

Vinylation halides

Vinylic halide reactions

Vinylic halide, alkynes from Sn2 reaction and

Vinylic halides compounds

Vinylic halides conversion

Vinylic halides coupling

Vinylic halides esters

Vinylic halides formation

Vinylic halides hydrolysis

Vinylic halides reaction with carboxylic

Vinylic halides unreactivity

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