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Nitrogenase metal cluster

The [FegS ] core of the P-cluster of nitrogenase see Nitrogenase Metal Cluster Models and Nitrogenase... [Pg.2296]

Iron-Sulfur Proteins Nitrogenase Metal Cluster Models. [Pg.2297]

Molybdenum Inorganic Coordination Chemistry Nifro-genase Catalysis Assembly Nitrogenase Metal Cluster Models Selenium Proteins Containing Selenocysteine Tungsten Proteins. [Pg.2796]

The current status of nitrogenase metal-cluster modeling by synthetic inorganic clusters and complexes is reported here. Modeling is to be understood not only in terms of stmcture and associated spectroscopic properties, but also in terms of function, that is, how well the models reproduce, or help to understand, the biological role of the metal-sulfur assembhes in nitrogenase, that is, electron transfer and the reduction of substrates. [Pg.3093]

Scheme 21 illustrates some of the diothiolene complexes that have been prepared. The coordination chemistry of ligands derived from benzene-1,2-dithiolate has been investigated with Fe and Ru centers for the potential binding of N2 and N2H4 as models for nitrogenase see Nitrogenase Metal Cluster Models) ... [Pg.4188]


See other pages where Nitrogenase metal cluster is mentioned: [Pg.2779]    [Pg.2939]    [Pg.3023]    [Pg.3025]    [Pg.3025]    [Pg.3045]    [Pg.3091]    [Pg.3091]    [Pg.3092]    [Pg.3093]    [Pg.3094]    [Pg.3095]    [Pg.3096]    [Pg.3097]    [Pg.3098]    [Pg.3099]    [Pg.3100]    [Pg.3101]    [Pg.3102]    [Pg.3103]    [Pg.3104]    [Pg.4172]    [Pg.2778]    [Pg.2938]    [Pg.3022]    [Pg.3024]    [Pg.3024]    [Pg.3044]    [Pg.3090]    [Pg.3090]    [Pg.3091]    [Pg.3092]    [Pg.3093]    [Pg.3094]    [Pg.3095]    [Pg.3096]    [Pg.3097]    [Pg.3098]    [Pg.3099]    [Pg.3100]    [Pg.3102]    [Pg.3103]   
See also in sourсe #XX -- [ Pg.11 , Pg.12 , Pg.13 , Pg.14 , Pg.15 , Pg.16 , Pg.17 , Pg.17 , Pg.18 , Pg.19 ]




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Nitrogenase

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