Ab initio Quantum Chemical Study on Charge Distribution and Molecular Structure of Uranyl (VI) Species with Raman Frequency.
- 31 December 2001
- journal article
- research article
- Published by Taylor & Francis in Journal of Nuclear Science and Technology
- Vol. 39 (6) , 647-654
- https://doi.org/10.3327/jnst.39.647
Abstract
Ab initio molecular orbital calculation was performed for uranyl (VI) monomer and dimer complexes with some water molecules and/or hydroxide ions. The Raman active frequencies were calculated for each complex after structural optimization in vacuum state, and investigated the molecular structure and the charge distribution. For uranyl monomer, the calculated Raman frequencies for uranyl with 5 or 6 water molecules show good agreement with experimental Raman frequencies for uranyl hydrates. On the contrary, the calculation underestimates the Raman frequency in case of hydroxide ions in uranyl complex. The calculation models for uranyl dimer were made from [UO2(H2O)5]2+, then the hydroxide ions bridging model, [(UO2)2(OH)2(H2O)6]2+, is more stable than water molecules bridging, [(UO2)2(H2O)8]4+, and the theoretical Raman frequency and uranyl bond lengths have the good coincidence with those of experiments. The calculated uranyl bond length of dimer is slightly longer than that of monomer. Also, the charge of oxygen atom in uranyl shows larger change than that of uranium atom between dimer and monomer. And this charge distribution is mostly influenced by the charge donation of ligands. If only same ligands are surrounding, the number of ligands influenced this charge distribution.Keywords
This publication has 30 references indexed in Scilit:
- Structure of Uranium(VI) in Strong Alkaline Solutions. A Combined Theoretical and Experimental InvestigationThe Journal of Physical Chemistry A, 1999
- Chemical Speciation of the Uranyl Ion under Highly Alkaline Conditions. Synthesis, Structures, and Oxo Ligand Exchange DynamicsInorganic Chemistry, 1999
- Transport Mechanism of Aromatic Vapor through Silver Salt Carrier/Polymer Blend Membrane and Its Humidity EffectThe Journal of Physical Chemistry B, 1999
- A Raman Spectroscopic Study of Uranyl Species Adsorbed onto Colloidal ParticlesThe Journal of Physical Chemistry B, 1998
- Investigation of Aquo and Chloro Complexes of UO22+, NpO2+, Np4+, and Pu3+ by X-ray Absorption Fine Structure SpectroscopyInorganic Chemistry, 1997
- Ab Initio Quantum Chemical Calculations on Uranyl UO22+, Plutonyl PuO22+, and Their Nitrates and SulfatesThe Journal of Physical Chemistry, 1995
- Structure of the hydrated dioxouranium(VI) ion in aqueous solution. An x-ray diffraction and proton NMR studyInorganic Chemistry, 1983
- Raman spectra of uranyl ion and its hydrolysis products in aqueous nitric acidThe Journal of Physical Chemistry, 1981
- A neutron diffraction study of uranyl nitrate hexahydrateActa Crystallographica, 1965
- Determination of U-O bond distance in uranyl complexes from their infrared spectraSpectrochimica Acta, 1959