| Article ID | Journal | Published Year | Pages | File Type |
|---|---|---|---|---|
| 5417439 | Journal of Molecular Structure: THEOCHEM | 2008 | 8 Pages |
Abstract
A bond-energy decomposition analysis (EDA) has been carried out to investigate the nature of the MNO bonding in the pentacyanonitrosyl [Cr(CN)5(NO)]4â, [Mn(CN)5(NO)]3â, [M(CN)5(NO)]2â (M = Fe, Ru, Os), [Co(CN)5(NO)]3â complexes and in the trans-nitrosyltetraammineruthenium [Ru(NH3)4L(NO)]q (L = pyrazine, pyridine, N2, H2O (q = 3); and L = Clâ, CNâ, NO2- (q = 2)) complexes. For the pentacyanonitrosyl complexes of Fe, Ru, and Os three fragmentation models have been considered: {M(CN)5}3ââ¯{NO}+, {M(CN)5}2ââ¯{NO}0, and {M(CN)5}ââ¯{NO}â. The results of the EDA show that the linear MNO bonds are predominantly covalent with a significant (â¼70%) contribution of Ï orbital interaction between unpaired electrons on the dÏ and Ïâ(NO0) orbitals. EDA results point to the correlation between MNO and ML binding interactions in the trans-[Ru(NH3)4L(NO)]q complexes.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Olga Lyubimova, Olga V. Sizova, Christoph Loschen, Gernot Frenking,
![First Page Preview: The nature of the metal-nitric oxide bond in the [M(CN)5(NO)]q (MÂ =Â Cr, Mn, Fe, Ru, Os, and Co) and trans-[Ru(NH3)4L(NO)]q (LÂ =Â pyrazine, pyridine, N2, H2O, Clâ, CNâ, NO2-) complexes: A bond-energy decomposition analysis The nature of the metal-nitric oxide bond in the [M(CN)5(NO)]q (MÂ =Â Cr, Mn, Fe, Ru, Os, and Co) and trans-[Ru(NH3)4L(NO)]q (LÂ =Â pyrazine, pyridine, N2, H2O, Clâ, CNâ, NO2-) complexes: A bond-energy decomposition analysis](/preview/png/5417439.png)