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Platinum complexes carbonyl clusters

Platinum nanoparticles, preparation, 12, 78 Platinum-nitrogen bonds, in platinacycles, 8, 508 Platinum-osmium carbonyl clusters, characteristics, 8, 420 Platinum-oxygen bonds, in platinacycles, 8, 505 Platinum particles, surface reactivity, 12, 542 Platinum-phosphorus bonds, in platinacycles, 8, 508 Platinum-rhenium carbonyl clusters, characteristics, 8, 420 Platinum(II)-ruthenium(II) binary complexes, preparation,... [Pg.173]

The [Pt6(CO)12]2- dianion can be used as starting material for the synthesis of other platinum carbonyl cluster complexes.1,3... [Pg.316]

Heterometallic metallomesogens, liquid crystals, 12, 223—224 Heterometallic polynuclear platinum carbonyl complexes heterodinuclear clusters, 8, 415 triangular clusters, 8, 417... [Pg.118]

Low-valent palladium and platinum form numerous clusters, usually based on the M3 triangle, as in the carbonyl phosphine complexes 18-H-I. Higher nuclearity clusters can be built up from edge-sharing triangles, e.g., the butterfly structure 18-H-II. [Pg.1067]

E5.4 Formation of platinum and palladium clusters with carbonyl and phosphine ligands E5.5 Reactivity and flexibility in platinum metal clusters E5.6 Excited state properties of the low-valent bi- and trinuclear complexes of palladium and platinum E5.7 Interstitial nickel carbonyl clusters... [Pg.1735]

Monomethoxycarbonyl ruthenium complexes have been obtained by reaction of mthenium(O) clusters with methoxide anion in methanol [67]. Hydroxyl-carbonyl complexes of platinum were prepared by nucleophilic attack of OH on a carbonyl ligand [68] or by insertion of CO into a hydroxy platinum complex [69]. Hydroxycarbonyl-bpy complexes of ruthenium [21], iridium and rhodium [21] have been proposed as... [Pg.227]

Reaction of metallates with cationic complexes. The synthesis of one of the largest metal carbonyl cluster structurally characterized up to date, [Ni38Pt6(CO)4sH2] ", has been obtained from the condensation reaction of the metallate [Ni6(CO)i2] with the platinum(II) salt PtCl2. [Pg.126]

C, Carbide iron complex, 26 246 ruthenium cluster complexes, 26 281-284 CHF,02, Acetic acid, trifluoro-tungsten complex, 26 222 CHFjOjS, Methanesulfonic acid, trifluoro-iridium, manganese, and rhenium complexes, 26 114, 115, 120 platinum complex, 26 126 CH2O2, Formic acid rhenium complex, 26 112 CH, Methyl iridium complex, 26 118 manganese complex, 26 156 rhenium complexes, 26 107 CHjO, Methanol platinum complexes, 26 135 tungsten complex, 26 45 CNajOuRusCn, Ruthenate(2- )ns-carbido-tetradecacarbonyl-disodium, 26 284 CO, Carbonyls chromium, 26 32, 34, 35 chromium, molybdenum, and tungsten, 26 343... [Pg.413]


See other pages where Platinum complexes carbonyl clusters is mentioned: [Pg.280]    [Pg.283]    [Pg.280]    [Pg.281]    [Pg.162]    [Pg.421]    [Pg.148]    [Pg.413]    [Pg.377]    [Pg.486]    [Pg.118]    [Pg.172]    [Pg.3338]    [Pg.161]    [Pg.945]    [Pg.784]    [Pg.43]    [Pg.3337]    [Pg.612]    [Pg.5250]    [Pg.5359]    [Pg.118]    [Pg.161]    [Pg.284]    [Pg.140]    [Pg.148]    [Pg.216]    [Pg.216]    [Pg.415]    [Pg.417]    [Pg.61]    [Pg.156]    [Pg.201]   
See also in sourсe #XX -- [ Pg.354 ]




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Carbonyl clusters

Carbonyl clusters, complexes

Cluster complexes

Platinum carbonyl complex

Platinum carbonylation

Platinum complexes anionic carbonyl clusters

Platinum complexes carbonylation

Platinum complexes clusters

Platinum-Ruthenium Carbonyl Cluster Complexes

Platinum-carbonyl clusters

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