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Hydrides mixed-metal carbonyl clusters

The reaction of a carbonylmetalate with a neutral metal carbonyl has been labeled a redox condensation by Chini et al. (40, 41) and has been as widely used as a pyrolysis reaction for synthesizing mixed-metal clusters. Carbonylmetalates usually react rapidly with most neutral carbonyls, even under very mild conditions. A large number of mixed-metal hydride clusters have been formed via this type of reaction, primarily because the initial products are anionic clusters that in many cases may be protonated to yield the neutral hydride derivative. [Pg.233]

A common feature of metal clusters is their stereochemical nonrigidity, in which carbonyl and hydride ligands exchange their coordination sites. Mixed-metal clusters are ideally suited for studies of the fluxional processes in clusters because of the low symmetry inherent in their metal framework. In such clusters, the majority of the ligands are in chemically nonequivalent positions and should thus be distinguishable by NMR... [Pg.257]

Metal dimers containing cyclopentadienyl ligands also can be separated to monomers with Hj as for (h -CjH5)2Cr2(CO) at 150 atm (15 MPa) and 70°C to yield HCr(CjHj-h )(CO)3. Mixed-metal hydride clusters may be synthesized from the H -assisted condensation of two different metal carbonyls. When Os3(CO),2 Or Ru3(CO),2 reacts with Ni2(C5Hj-h )2(CO)2 in the presence of at atm P, the mixed-metal clusters M3(ja-H)3Ni(C5H5-h5)(CO), [M = Ru (39%), Os (70%)] are formed l... [Pg.339]

The reaction of metal carbonyl complexes with carbonyl anions is a widely used technique for synthesis of mixed-metal clusters. This reaction is also termed reductive condensation or redox condensation. The metal carbonyl anion may be generated in situ or may be separately isolated. The mixed-metal product is usually an anion protonation can be used to generate a neutral cluster hydride. [Pg.101]

The first mixed-metal cluster of Os-Pd, [Os6Pd(bipy)(CO)i8], was reported in 1994, and since then a variety of mixed-metal cluster that contain various Os Pd ratios have been created. Palladium-pyridine complexes appear to be useful reagents in the synthesis of mixed-metal clusters with osmium carbonyl compounds. " The reaction of the coordinately unsaturated cluster [Os3(yu-H)2(CO)io] with [Pd(NH3)2l2] afforded a number of Os-Pd clusters with a high hydride content. " Both palladium phosphine and bidentate phosphine complexes are useful in the preparation of high-nuclearity mixed-metal clusters. The reaction of [Os3(/i-H)2(CO)io] with [Pd2(/i-dppm)2Cl2] gave 258 and 259, in addition to 260, with the same metal core, " in which the molecule contains a twofold symmetry axis. " " ... [Pg.1096]


See other pages where Hydrides mixed-metal carbonyl clusters is mentioned: [Pg.259]    [Pg.98]    [Pg.146]    [Pg.16]    [Pg.195]    [Pg.9]    [Pg.135]    [Pg.162]    [Pg.735]    [Pg.364]    [Pg.180]    [Pg.233]    [Pg.261]    [Pg.361]    [Pg.336]    [Pg.213]    [Pg.364]    [Pg.158]    [Pg.200]    [Pg.53]    [Pg.1101]   
See also in sourсe #XX -- [ Pg.30 , Pg.137 ]




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Carbonyl clusters

Metal carbonyl clusters

Metal carbonyl hydrides

Mixed Metal Carbonyls

Mixed carbonyls

Mixed metal

Mixed-Metal Clusters

Mixed-metal carbonyl cluster

Mixed-metal clusters carbonylation

Mixed-metal clusters metals

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