Dinitrogen cleavage and hydrogenation by a trinuclear titanium polyhydride complex
- PMID: 23812710
- DOI: 10.1126/science.1238663
Dinitrogen cleavage and hydrogenation by a trinuclear titanium polyhydride complex
Abstract
Both the Haber-Bosch and biological ammonia syntheses are thought to rely on the cooperation of multiple metals in breaking the strong N≡N triple bond and forming an N-H bond. This has spurred investigations of the reactivity of molecular multimetallic hydrides with dinitrogen. We report here the reaction of a trinuclear titanium polyhydride complex with dinitrogen, which induces dinitrogen cleavage and partial hydrogenation at ambient temperature and pressure. By (1)H and (15)N nuclear magnetic resonance, x-ray crystallographic, and computational studies of some key reaction steps and products, we have determined that the dinitrogen (N2) reduction proceeds sequentially through scission of a N2 molecule bonded to three Ti atoms in a μ-η(1):η(2):η(2)-end-on-side-on fashion to give a μ2-N/μ3-N dinitrido species, followed by intramolecular hydrogen migration from Ti to the μ2-N nitrido unit.
Comment in
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Chemistry. More can be better in N2 activation.Science. 2013 Jun 28;340(6140):1530-1. doi: 10.1126/science.1240365. Science. 2013. PMID: 23812704 No abstract available.
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