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Nickel palladium

Hydrogenation Catalysts. The key to catalytic hydrogenation is the catalyst, which promotes a reaction which otherwise would occur too slowly to be useful. Catalysts for the hydrogenation of nitro compounds and nitriles are generally based on one or more of the group VIII metals. The metals most commonly used are cobalt, nickel, palladium, platinum, rhodium, and mthenium, but others, including copper (16), iron (17), and tellurium... [Pg.258]

Hydrogenation. Hydrogenation is one of the oldest and most widely used appHcations for supported catalysts, and much has been written in this field (55—57). Metals useflil in hydrogenation include cobalt, copper, nickel, palladium, platinum, rhenium, rhodium, mthenium, and silver, and there are numerous catalysts available for various specific appHcations. Most hydrogenation catalysts rely on extremely fine dispersions of the active metal on activated carbon, alumina, siHca-alumina, 2eoHtes, kieselguhr, or inert salts, such as barium sulfate. [Pg.199]

Table 27.1 Some properties of the elements nickel, palladium and platinum... Table 27.1 Some properties of the elements nickel, palladium and platinum...
The mechanism by which this low oxidation state is stabilized for this triad has been the subject of some debate. That it is not straightforward is clear from the fact that, in contrast to nickel, palladium and platinum require the presence of phosphines for the formation of stable carbonyls. For most transition metals the TT-acceptor properties of the ligand are thought to be of considerable importance and there is... [Pg.1166]

Reduction of quinazoline oxides to quinazolines, catalytically (Raney nickel, palladium on charcoal) or with iron and ferrous sulfate in 85% alcohol can be extended to the preparation of benz-substituted quinazolines. ... [Pg.300]

E. Complexes of Ruthenium, Osmium, Nickel, Palladium, Platinum,... [Pg.115]

Co-condensation reaction of the vapors of l,3-di-rcrt-butylimidazol-2-ylidene and nickel, palladium, or platinum gives the coordinatively unsaturated 14-electron sandwiches [L M] (M=Ni, Pd, Pt) of the carbene type (990M3228). Palladium(O) carbene complexes can also be prepared by the direct interaction of l,3-R2-imidazol-2-ylidenes (R=/-Pr, r-Bu, Cy, Mes) (L) with the palladium(O) compound [Pd(P(o-Tol)3)2] (OOJOM(595)186), and the product at the first stage is [(L)PdP(o-Tol)3l, and then in excess free carbene [PdL ]. [Pg.136]

The addition of beryllium and silicon to nickel-palladium alloys gives very good high-temperature brazes, especially for alloys containing aluminium and titanium. [Pg.937]

The last vertical column of the eighth group of the Periodic Table of the Elements comprises the three metals nickel, palladium, and platinum, which are the catalysts most often used in various reactions of hydrogen, e.g. hydrogenation, hydrogenolysis, and hydroisomerization. The considerations which are of particular relevance to the catalytic activity of these metals are their surface interactions with hydrogen, the various states of its adatoms, and admolecules, eventually further influenced by the coadsorbed other reactant species. [Pg.245]

Recent advances in the stereochemistry of nickel, palladium and platinum. J. R. Miller, Adv. Inorg. Chem. Radiochem., 1962,4,133-195 (270). [Pg.29]

Kinetics of nickel, palladium and platinum complexes. A. Peloso, Coord. Chem. Rev., 1973, 10, 123-181 (305). [Pg.32]


See other pages where Nickel palladium is mentioned: [Pg.407]    [Pg.10]    [Pg.206]    [Pg.240]    [Pg.106]    [Pg.87]    [Pg.130]    [Pg.1144]    [Pg.1146]    [Pg.1148]    [Pg.1150]    [Pg.1150]    [Pg.1152]    [Pg.1153]    [Pg.1154]    [Pg.1156]    [Pg.1158]    [Pg.1160]    [Pg.1162]    [Pg.1164]    [Pg.1166]    [Pg.1166]    [Pg.1168]    [Pg.1170]    [Pg.1172]    [Pg.167]    [Pg.218]    [Pg.191]    [Pg.205]    [Pg.13]    [Pg.196]    [Pg.289]    [Pg.12]    [Pg.88]   
See also in sourсe #XX -- [ Pg.16 , Pg.17 ]

See also in sourсe #XX -- [ Pg.667 ]




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Alloy nickel-palladium

Applications of Palladium and Nickel Complexes in Natural Product Synthesis

Biaryl synthesis nickel- and palladium-catalyzed reactions

Bimetallic nickel-palladium

Bivalent Nickel, Platinum, and Palladium

By Palladium and Nickel Catalysts

Compounds of Nickel, Palladium and Platinum

Contain Nickel, Palladium and Platinum

Containing Nickel, Palladium, and Platinum Chains

Copper, Nickel, and Palladium

Cycloadditions palladium/nickel-catalyzed

Group 10 (Nickel, Palladium and Platinum)

Group VIII Nickel, Palladium and Platinum

Group VIIIC Nickel, Palladium, and Platinum

Nickel and Palladium

Nickel and Palladium Chlorohydridobis(phosphine) Complexes

Nickel and Palladium Complexes

Nickel and Palladium a-Diimine Catalysts

Nickel or palladium catalysed carbonyl addition and related reactions

Nickel or palladium catalysed conjugate addition and other carbozincation reactions

Nickel palladium-platinum triad

Nickel, Palladium and Platinum

Nickel, Palladium, and Platinum Complexes Derived from OFCOT

Nickel, Platinum, and Palladium Complexes

Nickel-palladium alloy films

Nickel/palladium catalysts

Organometallic Reactions Involving Hydro-Nickel, -Palladium, and -Platinum Complexes

Palladium Phosphine oxides, nickel complexes with

Palladium and nickel catalysed cross-coupling reactions of organozincs

Palladium and nickel catalysed reactions

Palladium and nickel catalysed reactions of organozinc compounds

Palladium nickel oxide

Palladium nickel-containing synthetic

Palladium-and Nickel-catalyzed Reactions

Palladium-and nickel-catalyzed cross-coupling reactions

Phenyl-aryl coupling, palladium-, nickel

Quadruply Bridged Dinuclear Complexes of Platinum, Palladium, and Nickel

Reaction Palladium and Nickel Organometallic Reagents

Recent Advances in the Stereochemistry of Nickel, Palladium, and Platinum

Sodium dimethylbis gallate reaction with nickel and palladium

Synthesis Using Nickel or Palladium Complexes

The Role of Redox Processes in Reactions Catalyzed by Nickel and Palladium Complexes with Anionic Pincer Ligands

Zerovalent nickel, palladium and platinum

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