Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1335100 | Polyhedron | 2009 | 9 Pages |
Abstract
[W(CO)5(α-NaiR-N)] are reported in this work. The complexes have been transformed to [W(CO)4(α-NaiR-N,Nâ²)] at higher temperatures (where α-NaiR-N is a monodentate imidazole-N donor ligand and α-NaiR-N,Nâ² denotes a bidentate imidazole-N, azo-N donor ligand). The emission of [W(CO)4(α-NaiR-N,Nâ²)] shows a higher quantum yield (Ï = 0.05-0.07) than [W(CO)5(α-NaiR-N)] (Ï = 0.01-0.02). Cyclic voltammetry exhibits metal oxidation and ligand reductions. The DFT calculations of [W(CO)5(α-NaiMe-N)] show contributions from the metal d-orbitals and Ï-orbitals of the CO ligands to the HOMO while the LUMOs are α-NaiMe dominated. The back bonding interaction thus originates from the W(CO)n moiety to the LUMO of α-NaiR.
Related Topics
Physical Sciences and Engineering
Chemistry
Inorganic Chemistry
Authors
Papia Datta, Ashis Kumar Patra, Chittaranjan Sinha,