Literature DB >> 22656318

Gas-phase uranyl, neptunyl, and plutonyl: hydration and oxidation studied by experiment and theory.

Daniel Rios1, Maria C Michelini, Ana F Lucena, Joaquim Marçalo, Travis H Bray, John K Gibson.   

Abstract

The following monopositive actinyl ions were produced by electrospray ionization of aqueous solutions of An(VI)O(2)(ClO(4))(2) (An = U, Np, Pu): U(V)O(2)(+), Np(V)O(2)(+), Pu(V)O(2)(+), U(VI)O(2)(OH)(+), and Pu(VI)O(2)(OH)(+); abundances of the actinyl ions reflect the relative stabilities of the An(VI) and An(V) oxidation states. Gas-phase reactions with water in an ion trap revealed that water addition terminates at AnO(2)(+)·(H(2)O)(4) (An = U, Np, Pu) and AnO(2)(OH)(+)·(H(2)O)(3) (An = U, Pu), each with four equatorial ligands. These terminal hydrates evidently correspond to the maximum inner-sphere water coordination in the gas phase, as substantiated by density functional theory (DFT) computations of the hydrate structures and energetics. Measured hydration rates for the AnO(2)(OH)(+) were substantially faster than for the AnO(2)(+), reflecting additional vibrational degrees of freedom in the hydroxide ions for stabilization of hot adducts. Dioxygen addition resulted in UO(2)(+)(O(2))(H(2)O)(n) (n = 2, 3), whereas O(2) addition was not observed for NpO(2)(+) or PuO(2)(+) hydrates. DFT suggests that two-electron three-centered bonds form between UO(2)(+) and O(2), but not between NpO(2)(+) and O(2). As formation of the UO(2)(+)-O(2) bonds formally corresponds to the oxidation of U(V) to U(VI), the absence of this bonding with NpO(2)(+) can be considered a manifestation of the lower relative stability of Np(VI).

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Year:  2012        PMID: 22656318     DOI: 10.1021/ic3001625

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  2 in total

1.  Influence of Background H2O on the Collision-Induced Dissociation Products Generated from [UO2NO3]<sup/>.

Authors:  Michael J Van Stipdonk; Anna Iacovino; Irena Tatosian
Journal:  J Am Soc Mass Spectrom       Date:  2018-04-13       Impact factor: 3.109

2.  Environmental modeling of uranium interstitial compositions of non-stoichiometric oxides: experimental and theoretical analysis.

Authors:  Bojidarka Ivanova; Michael Spiteller
Journal:  Environ Geochem Health       Date:  2015-07-30       Impact factor: 4.609

  2 in total

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