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Rhodium dusters

Rhenium(V) complexes magnetic behavior, 272 Rhenium(VI) complexes magnetic behavior, 271 Rhodate, aquapentachloro-stereochemistry, 50 Rhodate, diaquabis(sulfonyldiimino)-structure, 26 Rhodium dusters... [Pg.599]

Figure 6. Hydrogen uptake for rhodium, platinum and nickel cations as a function of duster size. H/M is the measured hydrogen to metal stoichiometry of the duster. Figure 6. Hydrogen uptake for rhodium, platinum and nickel cations as a function of duster size. H/M is the measured hydrogen to metal stoichiometry of the duster.
Rode et al. [64] investigated propylene hydroformylation by such a catalyst and measured the infrared spectra of the functioning catalyst. They conduded that the rhodium carbonyl duster was not the catalytically active spedes, but, instead, a mononuclear rhodium spedes was suggested to be the active spedes. [Pg.334]

Ichikawa et al. [207, 208] prepared mixtures of rhodium and iridium carbonyls in zeolite Y by reductive carbonylation of their salts. The carbonyls were suggested to be [Rh cIr6. (CO)i6] on the basis of infrared, EXAFS, and other results. The complexity of the mixture made it difficult to determine which clusters were present and in what proportions. The duster mixture was decarbonylated, giving clusters that were suggested to be Rhir clusters of various compositions. [Pg.354]

Tri-/ -carbonyl-nonacarbonyltetrarhodium is the starting material for the synthesis of a large number of rhodium carbonyl duster compounds. ... [Pg.244]


See other pages where Rhodium dusters is mentioned: [Pg.28]    [Pg.124]    [Pg.28]    [Pg.124]    [Pg.1088]    [Pg.181]    [Pg.255]    [Pg.349]    [Pg.308]    [Pg.103]    [Pg.338]    [Pg.524]    [Pg.535]    [Pg.422]   


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Dusters

Rhodium carbonyl duster

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