Reactivity of nitrido-carbonyl clusters: synthesis and solid state structure of [Fe5MnN(CO)(16)](2-) and [Fe6N(CO)(14)NO](2-); oxidation of a cluster-coordinated nitride

Citation
R. Della Pergola et al., Reactivity of nitrido-carbonyl clusters: synthesis and solid state structure of [Fe5MnN(CO)(16)](2-) and [Fe6N(CO)(14)NO](2-); oxidation of a cluster-coordinated nitride, J CHEM S DA, (14), 2001, pp. 2179-2183
Citations number
28
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS
ISSN journal
14727773 → ACNP
Issue
14
Year of publication
2001
Pages
2179 - 2183
Database
ISI
SICI code
1472-7773(2001):14<2179:RONCSA>2.0.ZU;2-A
Abstract
The cluster [Fe5MnN(CO)(16)](2-) (1) was synthesized from [Fe6N(CO)(15)](3- ) and Mn-2(CO)(10), in refluxing EtCN, or [Fe4N(CO)(12)](-) and [FeMn(CO)(9 )](-). Its solid state structure was determined on the [Me3NCH2Ph](+) salt, and consists of an octahedral metal cage, enclosing a six-coordinated nitr ido ligand. The position of the manganese atom in the solid state could be established, despite some crystallographic disorder, by considering the loc al stereochemistry of the ligands. The cluster [Fe6N(CO)(14)NO](2-) (2) was obtained in moderate yields by the reaction of [Fe4N(CO12](-) with Mo(CO)( 3)(EtCN)(3). The nitrosyl is formed by oxidation of the starting nitride, a nd the source of the oxygen is presumably a carbonyl, whose splitting is me diated by the molybdenum complex. This process is the first example of an o xidation of a nitride in a carbonyl cluster. The solid state structure of t he iron cluster is also octahedral, and the linear nitrosyl ligand was unam biguously located from the short Fe-N bond distance, and from dishomogeneou s distribution of ligands. Cyclic voltammetric studies have shown that elec tron transfer processes are followed by chemical reactions thus testifying that no stable redox congeners exist for these two nitride clusters.