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Nitrogen ligand complexes

Porphyrin and phthalocyanine complexes 48.6-2.8 Miscellaneous nitrogen ligand complexes... [Pg.901]

Fig. 13. Formation of a (x-peroxo-bridged complex from a nitrogen ligand complex of cobalt(II) and O2. The p,-peroxo-bridged complex is stabilized in the presence of a second bridging ligand, L, such as amino or hydroxo. Fig. 13. Formation of a (x-peroxo-bridged complex from a nitrogen ligand complex of cobalt(II) and O2. The p,-peroxo-bridged complex is stabilized in the presence of a second bridging ligand, L, such as amino or hydroxo.
Complexes with Dioximes, Schiff Bases, and Other Nitrogen Ligands Complexes with Monodentate Phosphines and Related Ligands Complexes with Bidentate Phosphine, Arsine, and Related Ligands Complexes with Sulfur Ligands Nitrosyl and Thionitrosyl Complexes VII. Technetium(IV)... [Pg.1]

Complexes with Oxygen Ligands and Oxo-Bridged Complexes Complexes with Schiff Base and Other Nitrogen Ligands Complexes with Phosphine and Arsine Ligands Complexes with Sulfur Ligands... [Pg.1]

The suggested sequence in the reduction of nitrite is an initial reduction of siroheme by an electron from ferredoxin. The reduced heme reacts with nitrite to form a nitrite-heme complex. Formation of this complex facilitates reduction of the iron-sulfur center. Electrons may transfer to the siroheme-nitrogen ligand complex from the iron-sulfur center. The reduced siroheme-nitrite complex receives an electron and is converted to the NO-siroheme complex. The further transformation of the NO-siroheme complex to an enzyme-NH4 complex involves the addition of five electrons however, the sequence of additions and the intermediates formed has not been determined (Hucklesby et al., 1979). [Pg.137]


See other pages where Nitrogen ligand complexes is mentioned: [Pg.79]    [Pg.1014]    [Pg.1015]    [Pg.1017]    [Pg.1019]    [Pg.303]    [Pg.2]    [Pg.542]    [Pg.542]    [Pg.509]    [Pg.31]    [Pg.32]    [Pg.34]    [Pg.84]    [Pg.105]    [Pg.303]    [Pg.901]    [Pg.4355]    [Pg.522]    [Pg.344]   
See also in sourсe #XX -- [ Pg.15 , Pg.41 ]




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Actinide complexes nitrogen ligands

Alkyne complexes nitrogen donor ligands

Antimony complexes nitrogen ligands

Arsenic complexes nitrogen ligands

Complexes containing nitrogen ligands

Complexes with Nitrogen Ligands

Complexes with nitrogen-coordinating ligands

Copper complexes nitrogen ligands

Dithiocarbamate complexes nitrogen-based ligands

Dithiolato complexes nitrogen ligands

Gold complexes anionic nitrogen donor ligands

Gold complexes nitrogen donor ligands

Gold(lll) Complexes with Nitrogen and Oxygen Ligands

Hafnium complexes nitrogen ligands

Hydridocobalt Complexes with Nitrogen Ligands

Indium complexes nitrogen ligands

Iridium complexes nitrogen ligands

Iron complexes nitrogen ligands

Iron complexes with nitrogen ligands

Iron(II) complexes with nitrogen ligands

Lanthanide complexes nitrogen donor ligands

Ligands nitrogen

Manganese complexes nitrogen ligands

Mercury complexes nitrogen ligands

Molybdenum complexes nitrogen donor ligands

Molybdenum complexes nitrogen ligands

Nitrogen complexes

Nitrogen complexes metal-ligand multiple bonds

Nitrogen ligands palladium complexes

Nitrogen ligands technetium complexes

Nitrogen ligands, transition metal dithiocarbamate complexes

Organochromium Complexes with Nitrogen-Containing Ligands for Ethylene Polymerization

Phosphorus-palladium complexes, nitrogen ligands

Platinum carrier-bound complexes, nitrogen donor ligands

Platinum complexes aromatic nitrogen ligands

Rhenium complexes with nitrogen ligands

Ruthenium complexes nitrogen donor ligands

Ruthenium complexes nitrogen ligands

Ruthenium complexes nitrogen-sulfur ligands

Ruthenium complexes with nitrogen ligands

Thallium complexes nitrogen ligands

Titanium complexes nitrogen ligands

Tungsten , halocarbonyl complexes nitrogen donor ligands

Xenon complexes nitrogen ligands

Zirconium complexes nitrogen ligands

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