Title of article :
Single-crystal EPR study and DFT structure of the [Mo(CO)5PPh3]+· radical cation Original Research Article
Author/Authors :
Helena Sidorenkova، نويسنده , , Theo Berclaz، نويسنده , , Bassirou Ndiaye، نويسنده , , Abdelaziz Jouaiti، نويسنده , , Michel Geoffroy، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
6
From page :
713
To page :
718
Abstract :
A radical species characterized by a large g-anisotropy and a clearly resolved hyperfine structure with 95/97Mo and 31P nuclei is formed, at 77 K, by radiolysis of a single crystal of Mo(CO)5PPh3. The corresponding EPR signals disappear irreversibly with increasing temperature and the angular dependence of the various coupling constants imply a spin delocalization of ∼60% and ∼4% on the molybdenum and the phosphorus atoms, respectively and are, a priori, consistent with the trapping of a one-electron deficient centre. The ability of DFT to predict the EPR tensors for a 17-electron Mo(I) species is verified by calculating the g-tensor and the various 14N and 13C coupling tensors previously reported by Hayes for [Mo(CN)5NO]3−. Calculations at the B3LYP/ZORA/SOMF level of theory show that, in contrast to Mo(CO)5PH3, one-electron oxidation of Mo(CO)5PPh3 causes an appreciable change in the geometry of the complex. The g-tensor and the 95/97Mo and 31P isotropic and anisotropic coupling constants calculated for [Mo(CO)5PPh3]+· confirm the trapping of this species in the irradiated crystal of Mo(CO)5PPh3; they also show that the conformational modifications induced by the electron release are probably hindered by the nearby complexes.
Keywords :
C. Density functional theory , A. Organometallic Compounds , D. Electron paramagnetic resonance , D. radiation damage
Journal title :
Journal of Physics and Chemistry of Solids
Serial Year :
2009
Journal title :
Journal of Physics and Chemistry of Solids
Record number :
1310757
Link To Document :
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