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Alkynes transition metals

Carbon-shielding tensors, alkene and alkyne transition metal complexes, 1, 472 Carbon—silicon bond formation... [Pg.76]

To obtain vinylsilanes from alkynes, transition metal complexes of Group VIII combined with a main group metal chloride are particularly effective." In the presence of a heterogeneous catalyst like Pd/y-alumina, Rh/carbon and polymer bound Pt, trichlorosilane gives trichlorovinylsilane with atmospheric pressure of acetylene." Platinum supported on sulfur-containing silica gel is a practical catalyst for 1,2-dihydrosilylation, as exemplified in equation (10). ... [Pg.769]

Simple, stable homoleptic bis(alkyne) transition metal n complexes are of interest as starting materials for organometalhc reactions, as well as model compounds for understanding the interactions between alkynes and metal surfaces. Although a wide range of n metal-alkyne compounds are known (102), most of the more unusual examples derive from the metals of groups 6 (VI B), 10 (VIII), and 11 (I B). Thus, due to the vastness of this area, our discussion will be mainly restricted these metal-bis(alkyne) constructs. [Pg.389]

Despite their obvious similarity to alkenes and alkynes, transition-metal alkylidene and alkylidyne complexes have not been used as building blocks for the synthesis of lowdimensional materials analogous to polyenes and polyynes. We have begun to explore the syntheses, structures, and properties of conjugated complexes and polymers derived from metal-alkylidyne complexes as part of our effort to develop the chemistry of transition-metal analogues of conjugated organic compounds. [Pg.71]

Transition Metal-catalyzed Cross-addition of TIPS-acetylene to Alkynes. Transition metal-catalyzed coupling reaction of a bulky silyl-substituted terminal alkyne through the addition of the C-H bond to carbon-carbon triple bonds can lead... [Pg.552]

Metal derivatives of terminal alkynes, RC2H. Transition metals form complex acetylides (e.g. (M(C = CR) ]- ) often containing the metal in low oxidation states. [Pg.12]

NMR, 3, 542 oxidation, 3, 546 phosphorescence, 3, 543 photoelectron spectra, 3, 542 photolysis, 3, 549 reactions, 3, 543-555 with alkenes, 3, 50 with alkynes, 3, 50 with IH-azepines, 3, 552 with azirines, 3, 554 with cyclobutadiene, 3, 551 with cyclopropenes, 3, 550 with dimethylbicyclopropenyl, 3, 551 with heterocyclic transition metal complexes, 7, 28 29... [Pg.852]

A unique method to generate the pyridine ring employed a transition metal-mediated 6-endo-dig cyclization of A-propargylamine derivative 120. The reaction proceeds in 5-12 h with yields of 22-74%. Gold (HI) salts are required to catalyze the reaction, but copper salts are sufficient with reactive ketones. A proposed reaction mechanism involves activation of the alkyne by transition metal complexation. This lowers the activation energy for the enamine addition to the alkyne that generates 121. The transition metal also behaves as a Lewis acid and facilitates formation of 120 from 118 and 119. Subsequent aromatization of 121 affords pyridine 122. [Pg.319]

The total synthesis of ( )-estrone [( )-1 ] by Vollhardt et al. is a novel extension of transition metal mediated alkyne cyclotrimeriza-tion technology. This remarkable total synthesis is achieved in only five steps from 2-methylcyclopentenone (19) in an overall yield of 22%. The most striking maneuver in this synthesis is, of course, the construction of tetracycle 13 from the comparatively simple diyne 16 by combining cobalt-mediated and ort/io-quinodimethane cycloaddition reactions. This achievement bodes well for future applications of this chemistry to the total synthesis of other natural products. [Pg.165]

Two commonly used synthetic methodologies for the synthesis of transition metal complexes with substituted cyclopentadienyl ligands are important. One is based on the functionalization at the ring periphery of Cp or Cp metal complexes and the other consists of the classical reaction of a suitable substituted cyclopentadienyl anion equivalent and a transition metal halide or carbonyl complex. However, a third strategy of creating a specifically substituted cyclopentadienyl ligand from smaller carbon units such as alkylidynes and alkynes within the coordination sphere is emerging and will probably find wider application [22]. [Pg.101]

Both silylmagnesium and silylaluminium species add to terminal alkynes in the presence of a transition-metal catalyst with high regio- and stereoselectivity. For example, platinum-catalysed silamagnesiation (3) followed by aqueous quenching provides exclusively ( )-l-silylalk-l-enes. [Pg.14]

The transition metal catalysed addition of a hydridosilane to a multiply-bonded system is known as hydrosilylation (1). Under such conditions, alkynes undergo clear cis-addition, so providing one of the most direct routes to vinylsilanes (Chapter 3). Hydridosilanes also add to the carbonyl group of saturated aldehydes and ketones, to produce alkyl silyl ethers. Fot example, under suitable conditions, 4-t-butylcyclohexanone (2) can be reduced with a high degree of stereoselectivity. [Pg.158]

Moving from alkenes to alkynes, it was found that a variety of transition-metal atoms react with hexafluoro-2-butyne (HFB) to form new... [Pg.152]

The reaction of alkenes with alkenes or alkynes does not always produce an aromatic ring. An important variation of this reaction reacts dienes, diynes, or en-ynes with transition metals to form organometallic coordination complexes. In the presence of carbon monoxide, cyclopentenone derivatives are formed in what is known as the Pauson-Khand reaction The reaction involves (1) formation of a hexacarbonyldicobalt-alkyne complex and (2) decomposition of the complex in the presence of an alkene. A typical example Rhodium and tungsten ... [Pg.1091]

The finding of preparatively available iminoboranes RB = NR some years ago opened exciting new possibilities not only in B—N chemistry, but also in coordination chemistry. The first examples of iminoborane-transition-metal complexes have now been published. The structurally completely characterized t-BuB = NBu-t adds, like its alkyne analog, to the 03(00)5 fragment as a bridging ligand. When Co2(CO)g and t-BuB = NBu-t are dissolved in pentane at 0°C, warming to RT and evaporation of unreacted iminoborane yields (t-BuBNBu-t)Co2(CO)5 (86%) as a black solid, which can be recrystallized from ether-nitromethane (1 3) ... [Pg.67]

The six-membered 1,4-diborines (1,4-diaboracyclohexadienes) are prepared by cocondensing alkynes with monomeric BF or by the tin route . They form a series of transition-metal complexes VIII-XIV by reaction with various complex... [Pg.71]

The first complexes of a-keto ylides and group 5 early transition metals have only recently been obtained by reaction of Nb(III) derivatives [[NbCl3(dme) (R C=CR")] with 25 (R = thiazolyl) (Scheme 16). The chelation of the ylide occurs through an N,0-coordination to the metal center and in presence of MeLi a deprotonation of a phenyl ring takes place with the loss of alkyne, leading to the formation of a new orfho-metallated binuclear compound 32. The two ylides involved in the complexation behave as tridentate anionic ligands and are mutually in a trans disposition in order to minimize the steric hindrance [71,72]. Another binuclear niobium complex 33 has been obtained from 25 (R = Me, Ph) with this time an 0-coordinated a-keto ylide [68]. [Pg.53]


See other pages where Alkynes transition metals is mentioned: [Pg.248]    [Pg.515]    [Pg.248]    [Pg.515]    [Pg.81]    [Pg.142]    [Pg.622]    [Pg.181]    [Pg.226]    [Pg.154]    [Pg.155]    [Pg.109]    [Pg.93]    [Pg.22]    [Pg.116]    [Pg.275]    [Pg.1009]    [Pg.1038]    [Pg.114]    [Pg.224]    [Pg.235]    [Pg.237]    [Pg.241]    [Pg.261]    [Pg.461]    [Pg.35]    [Pg.45]    [Pg.47]   
See also in sourсe #XX -- [ Pg.681 , Pg.682 ]




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Alkyne Addition to the Transition Metal Salts and Complexes

Alkyne polymerizations transition metal catalyzed

Alkyne-Substituted Transition Metal

Alkyne-Substituted Transition Metal Clusters

Alkynes cross-additions, transition metal-catalyzed

Alkynes metalated

Alkynes metallation

Alkynes transition metal acetylides

Alkynes transition metal-catalyzed/promoted

Alkynes transition metal-promoted

Alkynes, reactions with transition metal complexes

General Remarks on Transition Metal-Catalyzed Reactions of Alkynes

Metal alkynes

Metalation alkynes

Silicon-transition-metal complexes alkynes

Strained cyclic alkyne-transition-metal

Strained cyclic alkyne-transition-metal complex

Terminal alkynes with Group 9 transition metals

Transition metal catalysts alkyne hydration

Transition metal catalyzed alkyne hydroamination catalyst

Transition metal catalyzed alkyne substrates catalysts

Transition metal clusters of alkynes

Transition metal complexes with alkynes

Transition metal-catalyzed intramolecular internal alkynes

Transition metals alkyne complexes

Transition metals electrophilic alkyne additions

Transition metals metal-alkyne bond insertion

Transition metals unactivated alkyne additions

Transition-Metal-Catalyzed Hydroamination of Olefins and Alkynes

Transition-metal derivatives alkyne insertion into

Transition-metal-coordinated alkynes

Transition-metal-coordinated alkynes protonation

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