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Phosphine triphenyl-, cobalt complexes

C1bHi5As, Arsine, triphenyl-iron complex, 26 61 C H 5OjP, Triphenyl phosphite ruthenium complex, 26 178 CuHijP, Phosphine, triphenyl-cobalt complex, 26 190—197 cobalt-gold-ruthenium, 26 327 gold complex, 26 90, 325, 326 gold-manganese complex, 26 229 iridium complexes, 26 117-120, 122-125, 201, 202... [Pg.416]

PChH , Phosphine, dimethylphenyl-iron complex, 26 61 PC, Hn, Phosphine, diphenyl-manganese complex, 26 158, 226-230 ruthenium complex, 26 264 PC 3H27, Phosphine, tributyl-iron complex, 26 61 PC,H , Phosphine, methyldiphenyl-iron complex, 26 61 PC, H Phosphine, triphenyl-cobalt complex, 26 190-197 cobalt-gold-ruthenium, 26 327... [Pg.435]

PCijHij, Phosphine, triphenyl-, cobalt complex, 26 190-197,29 175 cobalt-gold-iron complex, 27 188 cobalt-gold-ruthenium, 26 327 gold complexes, 26 325,326,27 214, 29 280... [Pg.402]

POCisHis, Phosphine, triphenyl-, oxide cerium complexes, 23 178 P03C3H, Trimethyl phosphite chromium complexes, 23 38 cobalt and rhodium complexes, 25 162-163... [Pg.287]

PC8HM, Phosphine, dimethylphenyl-, 22 133 iridium complex, 21 97 PC 2H27, Phosphine, tributyl-, chromium complexes, 23 38 PC18H1S, Phosphine, triphenyl-, 21 78 23 38 cobalt complexes, 23 24-25 cobalt, iridium, and rhodium complexes, 22 171, 173, 174 iridium complex, 21 104 palladium complex, 22 169 palladium and platinum complexes, 21 10 ruthenium complex, 21 29 PNOC 2Hl2, Phosphinic amide, diphenyl-, lanthanoid complexes, 23 180 PNAH.2, Propionitrilc, 3,3, 3 -phosphinidy-netri-,... [Pg.251]

PQH, Phosphine, dimethylphenyl-, 22 133 iridium complex, 21 97 PC 8Hi3, Phosphine, triphenyl-, 21 78 cobalt, iridium, and rhodium complexes, 22 171, 173, 174 iridium complex, 21 104... [Pg.274]

To make butyraldehyde, the precursor for NBA, the so-called Oxo process is used, reacting chemical grade propylene with hydrogen and. carbon monoxide at 250-300°F and 3500-4000 psi. See Figure 14-4.) Under those conditions, both feeds are liquids. The catalyst is an oil-soluble cobalt carbonyl complex dissolved in the propylene. If rhodium-based catalysts or complexes based on rhodium carbonyls and triphenyl phosphine... [Pg.205]

The stabilizing effect of an axial ligand has been previously observed in the synthesis of cobalt corrolates. Such an effect has been used to synthesize the complex where no peripheral p substituents are present on the macrocycle, which decomposes if attempts are made to isolate it in the absence of triphenyl-phosphine [10]. The behavior of rhodium closely resembled that of cobalt and it seems to be even more sensitive to the presence of axial ligands. [Rh(CO)2Cl]2 has also used as a metal carrier with such a starting material a hexacoordinated derivative has been isolated. The reaction follows a pathway similar to that observed for rhodium porphyrinates the first product is a Rh+ complex which is then oxidized to a Rh3+ derivative [29]. [Pg.84]

Apart from the compounds already mentioned, vanadium, manganese, and cobalt chlorides, tetra-alkoxy derivatives of titanium, acetylacetonates of V, Cr, Mo, Mn, and Ni, Cp derivatives of Zr and Nb, and triphenyl phosphine complexes of Ti and Fe were found to be active. Later lanthanide complexes were included in the list of dinitrogen-reducing systems, the most effective being compounds of samarium and yttrium. [Pg.1555]

PO2WC2SH21, Tungsten, dicarbonyl(T) -cyclopentadienyl)hydrido(triphenyl-phosphine)-, 26 98, 28 7 PO3C3H, Trimethyl phosphite, cobalt and rhodium complexes, 28 283, 284 iron complexes, 26 61, 28 171, 29 158 nickel complex, 28 101 P03C,H,5, Triethyl phosphite, iron complexes, 26 61, 28 171, 29 159 nickel complexes, 28 101,104-106 P03C,H2, Isopropyl phosphite, nickel complex, 28 101... [Pg.404]

OC, Carbon monoxide chromium complex, 21 1, 2 cobalt, iron, osmium, and ruthenium complexes, 21 58-65 iron complex, 21 66, 68 palladium complex, 21 49 ruthenium complex, 21 30 OC3H4, Acetone, compd. with carbonyltri-p.-chloto-chlofotetrakis(triphenyl-phosphine)diiuthenium (1 2), 21 30... [Pg.273]

Tris-triphenyl phosphine cobalt nitrogen complex, N2C0 (PPh3)3, reacts with ethylene to form an ethylene complex. Suggest a structure for this complex. [Pg.170]


See other pages where Phosphine triphenyl-, cobalt complexes is mentioned: [Pg.414]    [Pg.352]    [Pg.414]    [Pg.396]    [Pg.396]    [Pg.440]    [Pg.414]    [Pg.352]    [Pg.414]    [Pg.396]    [Pg.396]    [Pg.440]    [Pg.286]    [Pg.250]    [Pg.250]    [Pg.424]    [Pg.211]    [Pg.590]    [Pg.97]    [Pg.590]    [Pg.33]    [Pg.515]    [Pg.430]    [Pg.135]    [Pg.257]    [Pg.139]    [Pg.169]    [Pg.32]    [Pg.10]   
See also in sourсe #XX -- [ Pg.16 , Pg.18 , Pg.33 ]




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