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Cobaltate gold

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]

CAS 12068-85-8. FeSr Often mixed with small amounts of copper, arsenic, nickel, cobalt, gold, selenium. [Pg.1062]

This reaction has, however, so far only been observed in the case of the cobalt-gold clusters. The condensed cluster Co2(CO)6Au(AuPPh3)6, on the other hand, can be transformed with Ph3PAu and PPh3 to two cluster cations [Co(CO)3-(AuPPh3)4] - (Eq. 14). ... [Pg.51]

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]

I. Amorphous state gadolinium-cobalt-gold alloys As for copper, Chaudari et al. (1974) have reported the magnetic properties of... [Pg.71]

An SEM image of the cross section of a cobalt-gold layer is shown in Figure 12.19 (Zielonka). The current density varied between 50 A dm (deposition of an alloy of 69% gold and 31% cobalt) and 0.8 A dm (deposition of an alloy of 26% gold and 74% cobalt). Sodium hypophosphite was added to the electrolyte to reduce tensions and achieve the parallel layer s orientation. [Pg.384]

Figure 12.19 SEM image of a cobalt-gold deposition of compositionally modulated multi-layer (Zielonka). (Reproduced with permission from Ref. [26], 1997, Eugen G. Leuze Verlag.)... Figure 12.19 SEM image of a cobalt-gold deposition of compositionally modulated multi-layer (Zielonka). (Reproduced with permission from Ref. [26], 1997, Eugen G. Leuze Verlag.)...
Occupational contact sensitization to different metal salts, including nickel, chromate, cobalt, gold, palladium and mercury/amalgam, has been found (Kanerva et al. 1993c Richter 1996 Rustemeyer and Frosch 1996 Cleenewerck 1997). However, in our experience, non-occupational sources of sensitization dominate, particularly for nickel, cobalt and mercury salts. [Pg.903]


See other pages where Cobaltate gold is mentioned: [Pg.324]    [Pg.413]    [Pg.428]    [Pg.343]    [Pg.394]    [Pg.353]    [Pg.364]    [Pg.376]    [Pg.414]    [Pg.420]    [Pg.313]    [Pg.617]    [Pg.1122]    [Pg.1107]    [Pg.347]    [Pg.352]    [Pg.65]    [Pg.353]    [Pg.364]    [Pg.376]    [Pg.414]    [Pg.383]    [Pg.285]    [Pg.390]    [Pg.396]    [Pg.855]    [Pg.877]    [Pg.333]    [Pg.345]    [Pg.1074]    [Pg.345]    [Pg.68]    [Pg.324]   
See also in sourсe #XX -- [ Pg.27 , Pg.188 ]

See also in sourсe #XX -- [ Pg.27 , Pg.188 ]




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Cobalt gold containing

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