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Alkenes metallation

Figure I9.2S Schematic reprESeniaiion of the two formal exliemes of bonding in 1,3-diene complexes In (a) the bonding is considered as two almost independent ij -alkene-metal bonds, whereas in (b) diere are a bonds to C(l) and C(4) and an ij -alkene-metal bond from C(2)-C(3)... Figure I9.2S Schematic reprESeniaiion of the two formal exliemes of bonding in 1,3-diene complexes In (a) the bonding is considered as two almost independent ij -alkene-metal bonds, whereas in (b) diere are a bonds to C(l) and C(4) and an ij -alkene-metal bond from C(2)-C(3)...
Alkene-metal complexes are usually prepared by a process by which some other ligand is dissociated from the metal. Both thermal and photochemical reactions are used. [Pg.767]

Fig. 8.6. Representation of it bonding in a alkene-metal cation complex. Fig. 8.6. Representation of it bonding in a alkene-metal cation complex.
The 7r-back donation stabilizes the alkene-metal 7c-bonding and therefore this is the reason why alkene complexes of the low-valent early transition metals so far isolated did not catalyze any polymerization. Some of them catalyze the oligomerization of olefins via metallocyclic mechanism [25,30,37-39]. For example, a zirconium-alkyl complex, CpZrn(CH2CH3)(7/4-butadiene)(dmpe) (dmpe = l,2-bis(dimethylphosphino)ethane) (24), catalyzed the selective dimerization of ethylene to 1-butene (Scheme I) [37, 38]. [Pg.7]

Carbocations formed through protonation of alkenes by proton acids are usually assumed as intermediates in alkylation with alkenes. Metal halides, when free of protic impurities, do not catalyze alkylation with alkenes except when a cocatalyst is present. It was shown that no neat conjugate Friedel-Crafts acids such as HA1C14 or HBF4 are formed from 1 1 molar compositions in the absence of excess HC1 or HF, or another proton acceptor.163-166 In the presence of a proton acceptor (alkene), however, the Lewis acid halides—hydrogen halide systems are readily able to generate carbocations ... [Pg.239]

The reactivity of alkenes increases with their nucleophilic nature in the order tetra-substituted>trisubstituted>disubstituted>monosubstituted. Further, the epoxidation rate V = /c2X[alkene][complex]/(l + J [alkene]) shows that decomposition of the alkene-metal complex represents the rate determining step in this reaction. [Pg.331]

Oxidation of Alkenes Metal Induced Formation of an Allylic Carbon-Oxygen Bond"... [Pg.481]

The selective and efficient metallation of alkenes in the allylic position by the Schlosser s base is certainly one of the major achievements in the field of superbase chemistry. A complete list of successful alkene metallations by superbases would be too long for the purpose of this chapter but some representative examples are shown in Tables 2 and 3 as a general trend for the unsubstituted and heterosubstituted alkenes, respectively. [Pg.6]

A more recent example of alkene metallation by superbase followed by reaction with electrophiles is the functionalization of isopulegol which can be performed without protection of the hydroxy group.81... [Pg.10]

Figure 16-26 The molecular orbital view of alkene—metal bonding according to Dewar. Figure 16-26 The molecular orbital view of alkene—metal bonding according to Dewar.
Other synthetic routes to alkene-metal complexes reported in the literature involve bridge cleavage reactions of halogeno complexes (method F), facile intermolecular scrambling reactions involving metal-alkene and metal-PF3 complexes (18, 81) (method G) (Scheme 4), and the coupling together of two alkyne units to afford a metallo-cyclopentadiene derivative (method H). [Pg.82]

Scheme 8 Three selectivity issues in nucleophilic addition to alkene-metal complexes... Scheme 8 Three selectivity issues in nucleophilic addition to alkene-metal complexes...
At the outset of the subsection, it should be emphasized that distinction between metallacyclopropenes and q -alkyne-metal complexes or that between metallacyclopropanes and q -alkene-metal complexes is largely a matter of semantics or convenience. Most or perhaps all of these species should probably be viewed as hybrids of three-membered metallacycles and ir-complexes. [Pg.1173]


See other pages where Alkenes metallation is mentioned: [Pg.934]    [Pg.6]    [Pg.763]    [Pg.91]    [Pg.61]    [Pg.669]    [Pg.670]    [Pg.69]    [Pg.331]    [Pg.707]    [Pg.112]    [Pg.127]    [Pg.136]    [Pg.2687]    [Pg.669]    [Pg.670]    [Pg.1912]    [Pg.1919]    [Pg.1933]   
See also in sourсe #XX -- [ Pg.1016 ]




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Addition of metal hydrides to alkenes and alkynes

Additions metal-activated alkenes, palladium acetate

Alkali metal fluorides fluondes to alkenes

Alkene isomerizations catalyzed by transition metal complexes

Alkene metathesis metal carbene complexes

Alkene oxidation reactions by metal-oxo

Alkene oxidation reactions by metal-oxo compounds

Alkene polymerization, metal complex catalysts

Alkene transition metal-catalyzed epoxidation

Alkene transition-metal catalyzed polymerizations

Alkene unsaturated metals

Alkene-metal complexes Reactions

Alkenes 1,3-diketone metal complexes

Alkenes Group VIII metal

Alkenes acetylacetone metal complexes

Alkenes by Transition Metals

Alkenes complexes with transition metals

Alkenes copper metal

Alkenes dissolving metal

Alkenes dissolving metal reduction

Alkenes for metal catalysis

Alkenes insertions into metal-alkyl bonds

Alkenes lithium metal

Alkenes metal alkene complexes

Alkenes metal carbonyl reaction

Alkenes metal carbonyl reaction with

Alkenes metal catalyzed

Alkenes metal catalyzed oxidations with

Alkenes metal halide reaction with

Alkenes metal ion complexes

Alkenes metal-activated

Alkenes metalation

Alkenes mixed metal catalysts

Alkenes mixed metals

Alkenes nitrogenation, metal-free

Alkenes reactions with metal carbonyl clusters

Alkenes reduction: with alkali metals

Alkenes transition metal catalysis

Alkenes transition metal peroxide oxidation

Alkenes transition metal-catalyzed

Alkenes transition metals

Alkenes via metal carbene complexes

Alkenes with metal alkoxides

Alkenes with metal hydrides

Alkenes, metal catalyzed amination

Alkenes, metal catalyzed carbonylation

Alkenes, metal catalyzed carboxylation

Alkenes, metal catalyzed halides

Alkenes, metal catalyzed hydration

Alkenes, metal catalyzed hydroamination

Alkenes, metal catalyzed hydroformylation

Alkenes, metal induced

Alkenes, metal mediated

Alkenes, reaction with metal complexes

Alkenes, reactions with metal atoms

Alkenes, with acids metal catalyzed

Alkenes, with acids metal salts

Bonding in metal-alkene complexes

Carbanions metal reaction, alkene

Catalysis metal-alkene reactions

Computational studies of alkene oxidation reactions by metal-oxo compounds

Epoxidations of Alkenes Catalyzed by Early Transition Metals

External attack of nucleophiles on alkene coordinated to electrophilic metal complexes

Group 8 metal-promoted oxidations alkene cleavage and asymmetric dihydroxylation

Group 9 metal-promoted oxidations aerobic epoxidation of alkenes

Halides, aryl, arylation alkenes, metal

Halides, aryl, arylation alkenes, metal catalyzed

Magnesium metal alkenes

Metal Alkenes, Alkynes, and Phenyls

Metal alkene complexes

Metal alkene complexes preparation

Metal alkene metathesis

Metal alkenes

Metal alkenes

Metal alkenes hydroformylation

Metal alkenes preparation

Metal atoms alkenes

Metal by alkenes

Metal carbonyl complexes alkene reaction with

Metal carbonyls alkene hydrogenation

Metal carbonyls hydroformylation, alkenes

Metal carbonyls hydrosilation, alkenes

Metal carbonyls isomerization, alkenes

Metal catalysts, addition alkenes

Metal catalyzed, arylation alkenes

Metal complexes with alkenes

Metal enolates alkenes

Metal enolates reactions with alkenes

Metal hydrides alkenes

Metal hydrides, addition alkenes

Metal hydrides, reaction with alkenes

Metal induced elimination alkenes

Metal insertion alkene isomerization

Metal insertion alkene polymerization

Metal ions, reaction with alkenes

Metal-alkene bonding

Metal-carbene complexes reaction with alkenes

Metal-mediated Schmidt Reactions of Alkyl Azides with Alkenes and Alkynes

Metalated alkenes, cross-coupling with vinyl

Metallation of Alkenes in the Vinylic Position

Metallation of Alkenes, Dienes, and Polyenes at the Allylic Position

Metallation, of alkenes

Modern Alchemy Replacing Precious Metals with Iron in Catalytic Alkene and Carbonyl Hydrogenation Reactions

Neutral metal atoms, reactions with alkenes

Noble metal catalysts alkenes

Olefin (alkene) polymerization and dismutation on metals

Peterson alkenation reactivity of metal anions

Porphyrin metal complex catalysts, alkene

Porphyrin metal complex catalysts, alkene epoxidation

Preparation of Metal Alkene Complexes

Rearrangement, 1,2-alkyl alkenes, metal catalyzed

Silicon-transition-metal complexes alkenes

Sodium borohydride-metal salts alkenes

Structure and Bonding in Metal Alkene Complexes

Studies of Alkene Oxidation Reactions by Metal-Oxo Compounds

Substitution reactions metal alkene complexes from

Titanium-catalysed reactions alkene metallation

Transfer from Metal Nitrites to Alkenes

Transition Metal Bonding to Alkenes Zeises Salt

Transition Metal-Alkene Complexes

Transition metal catalysts alkene cross-coupling reactions

Transition metal catalyzed alkene substrates catalysts

Transition metal complexes alkene metathesis

Transition metal complexes fluorinated alkenes

Transition metal peroxides alkenes

Transition-metal derivatives alkene insertion into

Transition-metal-coordinated alkenes

Transition-metal-coordinated alkenes complex hydrides

Transition-metal-coordinated alkenes reactions with

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