Abstract
The oxidative coupling of nitride ligands (N3-) to dinitrogen and its microscopic reverse, N2-splitting to nitrides, are important elementary steps in chemical transformations, such as selective ammonia oxidation or nitrogen fixation. Here an experimental and computational evaluation is provided for the homo- and heterocoupling of our previously reported iridium(iv) and iridium(v) nitrides [IrN(PNP)]n (n = 0, +1; PNP = N(CHCHPtBu2)2). All three formal coupling products [(PNP)IrN2Ir(PNP)]n (n = 0-+2) were structurally characterized. While the three coupling reactions are all thermodynamically feasible, homocoupling of [IrN(PNP)]+ is kinetically hindered. The contributing parameters to relative coupling rates are discussed providing qualitative guidelines for the stability of electron rich transition metal nitrides.
Cite
CITATION STYLE
Abbenseth, J., Finger, M., Würtele, C., Kasanmascheff, M., & Schneider, S. (2016). Coupling of terminal iridium nitrido complexes. Inorganic Chemistry Frontiers, 3(4), 469–477. https://doi.org/10.1039/c5qi00267b
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.