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Tantalum dinitrogen activation

Chow C, Taoufik M, QuadreDi EA. Ammonia and dinitrogen activation by surface organometaUic chemistry on srhca-grafted tantalum hydrides. Eur J Inorg Chem. 2011 1349-1359. [Pg.366]

Reactions other than Lewis acid-base associations/dissociations are frequently observed wit donor molecules, leading notably to solvolysis, oxygen or sulfur abstraction, insertion reaction and carbon-carbon coupling reactions. The tendency to form metal-element multiple bonds i remarkable in this respect the activation of dinitrogen by tantalum or niobium is unique. Th formation and chemistry of constrained reactive metallacycles open another promisin fast-developing area, on the frontier with organometallic chemistry. [Pg.588]

Increasing the number of electrons reduces the activation of N2, because the electrons occupy the orbitals which are bonding with respect to the NN bond, and actually stabilize it. In agreement with this prediction dinitrogen is sufficiently activated to be reduced by protonation by dinuclear complexes of titanium(II), zirco-nium(Il), niobium(III), tantalum(III), molybdenum(IV), and tungsten(IV), whereas it is not reduced by protonation by certain d -d complexes, such as those of molybdenum(O), ruthenium(II), or rhodium(I). Apparently dinuclear complexes M-N=N-M in which M has the d electronic configuration can be intermediates in dinitrogen reduction in protic media, particularly if they represent part of polynuclear complexes (vide infra). [Pg.1547]


See other pages where Tantalum dinitrogen activation is mentioned: [Pg.46]    [Pg.589]    [Pg.2428]    [Pg.47]    [Pg.281]    [Pg.194]    [Pg.413]    [Pg.434]   
See also in sourсe #XX -- [ Pg.46 ]




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