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Acetylenes monosubstituted

Monosubstituted acetylenes add formaldehyde in the presence of copper, silver, and mercury acetyUde catalysts to give acetylenic alcohols (58) (Reppe reaction). Acetylene itself adds two molecules (see Acetylene-DERIVED chemicals). [Pg.492]

Dipolar additions of diazomethane to acetylenes under mild conditions are restricted to monosubstituted acetylenes thus the formation of pyrazole derivatives 1 (1,3-dipolar addition, C=C isomerization, then methylation) confirms the existence of a terminal acetylene in caryoynencins (87TL3981) (Scheme 5). [Pg.4]

Diazopropyne reacts similarly with a monosubstituted acetylene to form 3(5)-alkynylpyrazoles (68LA113). Thus, the reaction of diazopropyne with acetylene-carboxylic acid methyl ether results in 5-ethynyl-l//-pyrazole-3-carboxylic acid methyl ether in 48 h in 62% yield. 5-Ethynyl-l//-pyrazole-3,4-dicarboxylic acid dimethyl ester was prepared by reaction of diazopropyne with acetylenedicar-boxylic acid methyl ether (Scheme 10). [Pg.7]

Trimethylsilylethynylpyrazole was deprotected by treatment with tetrabutyl-ammonium fluoride (TBAF) to give monosubstituted acetylene in 90% yield. (96ADD193). The same conditions were used to cleave the trimethylsilyl group in l-tetrahydropyranyl-3-carboxyethyl-4-[2-(trimethylsilyl)ethynyl]pyrazole (96INP 9640704). [Pg.48]

The high reactivity of monosubstituted acetylenes in many reactions (acetylenic condensation, Favorsky reaction, Mannich reaction, oxidative coupling, etc.) is determined by their acidity (7IMI1 83MI1). The literature data on the thermodynamic CH acidity of these compounds are rather scarce. [Pg.75]

The addition of (TMS)3SiH to a number of monosubstituted acetylenes has also been studied in some detail. These reactions are highly regioselective (anti-Markovnikov) and give terminal (TMSlsSi-substituted alkenes in good yields. High cis or trans stereoselectivity is also observed, depending on the nature of the substituents at the acetylenic moiety. For example, the reaction of the alkynes 23 and 24 with (TMSlsSiH, initiated either by EtsB at room temperature (method or by thermal decomposition of di-ferf-butyl peroxide at 160 °C... [Pg.131]

The reactions of alkyl nitronates (164) or (165) derived from a-functionalized primary AN with monosubstituted acetylenes produce mixtures of diastereomeric aziridines (166) in moderate to high yields. Most probably, the first step of this process involves normal concerted cycloaddition to give the corresponding intermediates A, which were not detected due to their fast rearrangement to give acyl-substituted aziridines (166). The reaction is regioselective and stereospecific. The latter fact was demonstrated by French researchers (95). [Pg.553]

Interestingly, the character of the reaction with cyclic six-membered nitronates is similar. For example, A-oxide (167) reacts with monosubstituted acetylenes... [Pg.553]

Typical examples of the polymerization of monosubstituted acetylenes are shown in Table 3. Transition metal catalysts that involve Mo, W, and Rh are particularly effective. Whereas Mo and W catalysts are sensitive to polar groups in the monomer, Rh catalysts are tolerant to such groups. Another point is that Mo and W catalysts are effective to various sterically crowded monomers, while Rh catalysts are useful to rather restricted kinds of monomers including... [Pg.559]

Rh complexes are examples of the most effective catalysts for the polymerization of monosubstituted acetylenes, whose mechanism is proposed as insertion type. Since Rh catalysts and their active species for polymerization have tolerance toward polar functional groups, they can widely be applied to the polymerization of both non-polar and polar monomers such as phenylacetylenes, propiolic acid esters, A-propargyl amides, and other acetylenic compounds involving amino, hydroxy, azo, radical groups (see Table 3). It should be noted that, in the case of phenylacetylene as monomer, Rh catalysts generally achieve quantitative yield of the polymer and almost perfect stereoregularity of the polymer main chain (m-transoidal). Some of Rh catalysts can achieve living polymerization of certain acetylenic monomers. The only one defect of Rh catalysts is that they are usually inapplicable to the polymerization of disubstituted acetylenes. Only one exception has been reported which is described below. [Pg.572]

With monosubstituted acetylenes, such as phenylacetylene (94) and propiolaldehyde diethyl acetal (95), the orientation of phenyl azide is determined both by electronic and steric effects.307 08... [Pg.17]

The benzofuran ring has been obtained from p-benzoquinones with monosubstituted acetylenes (Li in liquid NH3)378 and with /3-diethyl-aminovinyl ketones.379-381... [Pg.388]

Monosubstituted acetylenic compounds can be oxidatively dimerized by air at room temperature in the presence of copper salts in a pyridine-methanol solution. This method has been applied to a wide variety of acetylenic compounds and gives high yields in disubstituted diacetylenic compounds (equation 264).590... [Pg.390]

As shown with phenylacetylene (77KGS994), the formation of pyrroles may involve some monosubstituted acetylenes, incapable of prototropic... [Pg.264]

Early reports stated that the course of reaction is strongly dependent on the reaction conditions (L e. the employed catalyst)20-28. Benkeser20-22 and his co-wor-kers intensively investigated hydrosilylation of monosubstituted acetylenes 1 [R = i-prop- (la) and t-But- (lb)]. [Pg.35]

Monosubstituted acetylenes, polymerization, 11, 559 Monosubstituted ferrocenes, properties, 12, 222 Monothiolato compounds, in mono-Cp Ti(IV) complexes,... [Pg.152]


See other pages where Acetylenes monosubstituted is mentioned: [Pg.378]    [Pg.170]    [Pg.23]    [Pg.38]    [Pg.76]    [Pg.251]    [Pg.83]    [Pg.360]    [Pg.295]    [Pg.277]    [Pg.187]    [Pg.127]    [Pg.98]    [Pg.557]    [Pg.558]    [Pg.559]    [Pg.565]    [Pg.566]    [Pg.569]    [Pg.573]    [Pg.588]    [Pg.116]    [Pg.769]    [Pg.816]    [Pg.1498]    [Pg.1591]    [Pg.1591]    [Pg.1593]    [Pg.1593]    [Pg.1595]    [Pg.283]   
See also in sourсe #XX -- [ Pg.360 ]

See also in sourсe #XX -- [ Pg.360 ]

See also in sourсe #XX -- [ Pg.55 , Pg.60 ]




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Acetylene monosubstitution

Metathesis polymerization of monosubstituted acetylenes

Monosubstituted

Monosubstitution

Polymerization of Monosubstituted Acetylenes

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