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Article
Complexation of the Carbonate, Nitrate, and Acetate Anions with the Uranyl Dication:  Density Functional Studies with Relativistic Effective Core Potentials
Journal of Physical Chemistry A (2005)
  • Wibe A. de Jong, Pacific Northwest National Laboratory
  • Edoardo Apra, Pacific Northwest National Laboratory
  • Theresa L. Windus, Pacific Northwest National Laboratory
  • Jeffrey A. Nichols, Oak Ridge National Laboratory
  • Robert J. Harrison, Oak Ridge National Laboratory
  • Keith E. Gutowski, University of Alabama - Tuscaloosa
  • David A. Dixon, University of Alabama - Tuscaloosa
Abstract
The structures and vibrational frequencies of uranyl carbonates, [UO2(CO3)n](2-2n) and [(UO2)3(CO3)6],6- uranyl nitrates, [UO2(NO3)n](2-n), and uranyl acetates, [UO2(CH3COO)n](2-n) (n = 1,2,3) have been calculated by using local density functional theory (LDFT). Only bidentate ligand coordination modes to the uranyl dication have been modeled. The calculated structures and frequencies are compared to available experimental data, including IR, Raman, X-ray diffraction, and EXAFS solution and crystal structure data. The energetics of ligand binding have been calculated using the B3LYP hybrid functional. In general, the structural and vibrational results at the LDFT level are in good agreement with experimental results and provide realistic pictures of solution phase and solid-state behavior. For the [UO2(CO3)3]6- anion, calculations suggest that complexity in the CO32- stretching signature upon complexation is due to the formation of CO and C−O domains, the latter of which can split by as much as 300 cm-1. Assessment of the binding energies indicate that the [UO2(CO3)2]2- anion is more stable than the [UO2(CO3)3]4- anion due to the accumulation of excess charge, whereas the tri-ligand species are the most stable in the nitrate and acetate anions.
Publication Date
2005
DOI
10.1021/jp0541462
Publisher Statement
Reprinted (adapted) with permission from J. Phys. Chem. A, 2005, 109 (50), pp 11568–11577. Copyright 2005 American Chemical Society.
Citation Information
Wibe A. de Jong, Edoardo Apra, Theresa L. Windus, Jeffrey A. Nichols, et al.. "Complexation of the Carbonate, Nitrate, and Acetate Anions with the Uranyl Dication:  Density Functional Studies with Relativistic Effective Core Potentials" Journal of Physical Chemistry A Vol. 109 Iss. 50 (2005) p. 11568 - 11577
Available at: http://works.bepress.com/theresa-windus/18/