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Carbonyl complexes oxidative additions

Interest has developed recently in cyclopentadienylcobalt carbonyl complexes. Oxidative addition of RI (R = Me or Et) to CpCo(CO)L (L = PPh3, PMe2Ph, or PMePh2) yields initially CpCo(CO)RL I, which then undergoes rapid CO insertion to CpCoL(COR) . The slow step has been studied kinetically 148). Compounds of the type CpCo(CO)(Rp)I afford ionic substitution products when treated with chelating diphosphines 106). [Pg.133]

The mechanism of the Zn chloride-assisted, palladium-catalyzed reaction of allyl acetate (456) with carbonyl compounds (457) has been proposed [434]. The reaction involves electroreduction of a Pd(II) complex to a Pd(0) complex, oxidative addition of the allyl acetate to the Pd(0) complex, and Zn(II)/Pd(II) transmetallation leading to an allylzinc reagent, which would react with (457) to give homoallyl alcohols (458) and (459) (Scheme 157). Substituted -lactones are electrosynthesized by the Reformatsky reaction of ketones and ethyl a-bromobutyrate, using a sacrificial Zn anode in 35 92% yield [542]. The effect of cathode materials involving Zn, C, Pt, Ni, and so on, has been investigated for the electrochemical allylation of acetone [543]. [Pg.583]

Use of alcohol as a solvent for carbonylation with reduced Pd catalysts gives vinyl esters. A variety of acrylamides can be made through oxidative addition of carbon monoxide [630-08-0] CO, and various amines to vinyl chloride in the presence of phosphine complexes of Pd or other precious metals as catalyst (14). [Pg.414]

The coordination chemistry of NO is often compared to that of CO but, whereas carbonyls are frequently prepared by reactions involving CO at high pressures and temperatures, this route is less viable for nitrosyls because of the thermodynamic instability of NO and its propensity to disproportionate or decompose under such conditions (p. 446). Nitrosyl complexes can sometimes be made by transformations involving pre-existing NO complexes, e.g. by ligand replacement, oxidative addition, reductive elimination or condensation reactions (reductive, thermal or photolytic). Typical examples are ... [Pg.448]

Such a complex, cw-Rh(CO)2I2, is the active species in the Monsanto process for low-pressure carbonylation of methanol to ethanoic acid. The reaction is first order in iodomethane and in the rhodium catalyst the rate-determining step is oxidative addition between these followed by... [Pg.103]

Carbonyl derivatives can be made similarly, either by abstracting CO from the solvent, by direct introduction or by oxidative addition to a Vaska-type complex ... [Pg.127]

Carbonyl complexes infrared spectra oxidative additions reactions structures syntheses... [Pg.368]

Besides dissociation of ligands, photoexcitation of transition metal complexes can facilitate (1) - oxidative addition to metal atoms of C-C, C-H, H-H, C-Hal, H-Si, C-0 and C-P moieties (2) - reductive elimination reactions, forming C-C, C-H, H-H, C-Hal, Hal-Hal and H-Hal moieties (3) - various rearrangements of atoms and chemical bonds in the coordination sphere of metal atoms, such as migratory insertion to C=C bonds, carbonyl and carbenes, ot- and P-elimination, a- and P-cleavage of C-C bonds, coupling of various moieties and bonds, isomerizations, etc. (see [11, 12] and refs, therein). [Pg.38]

Carbonylation reactions have been observed using both Pd(II)-alkene complexes and CT-bonded Pd(II) species formed by oxidative addition. Under reductive conditions, the double bond can be hydrocarbonylated, resulting in the formation of a carboxylic acid or ester.238 In nucleophilic solvents, the intermediate formed by solvopalladation is intercepted by carbonylation and addition of nucleophilic solvent. In both types of reactions, regioisomeric products are possible. [Pg.748]


See other pages where Carbonyl complexes oxidative additions is mentioned: [Pg.3773]    [Pg.4041]    [Pg.230]    [Pg.366]    [Pg.299]    [Pg.277]    [Pg.4]    [Pg.338]    [Pg.3772]    [Pg.4040]    [Pg.444]    [Pg.509]    [Pg.178]    [Pg.167]    [Pg.143]    [Pg.35]    [Pg.103]    [Pg.221]    [Pg.16]    [Pg.510]    [Pg.182]    [Pg.172]    [Pg.1166]    [Pg.202]    [Pg.152]    [Pg.208]    [Pg.114]    [Pg.116]    [Pg.29]    [Pg.66]    [Pg.130]    [Pg.261]    [Pg.6]    [Pg.66]    [Pg.24]    [Pg.194]    [Pg.14]    [Pg.106]    [Pg.225]   
See also in sourсe #XX -- [ Pg.135 , Pg.139 ]

See also in sourсe #XX -- [ Pg.135 , Pg.139 ]

See also in sourсe #XX -- [ Pg.135 , Pg.139 ]

See also in sourсe #XX -- [ Pg.135 , Pg.139 ]




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Carbonyl complexes oxidative addition reactions

Carbonyl oxidation

Carbonyl oxide

Carbonyl, addition

Carbonylation additive

Carbonylation oxide

Complexing additives

Oxidation carbonylative

Oxidation oxidative carbonylation

Oxidative addition carbonylation

Oxidative addition complexes

Oxidative carbonylation

Oxidative carbonylations

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