Publication Type Journal Article
Title Oxo-Exchange of Gas-Phase Uranyl, Neptunyl, and Plutonyl with Water and Methanol
Authors Ana F. Lucena Samuel O. Odoh Jing Zhao Joaquim Marçalo Georg Schreckenbach John K. Gibson
Groups IOARC
Journal INORGANIC CHEMISTRY
Year 2014
Month February
Volume 53
Number 4
Pages 2163-2170
Abstract A challenge in actinide chemistry is activation of the strong bonds in the actinyl ions, AnO(2)(+) and AnO(2)(2+), where An = U, Np, or Pu. Actinyl activation in oxo-exchange with water in solution is well established, but the exchange mechanisms are unknown. Gas-phase actinyl oxo-exchange is a means to probe these processes in detail for simple systems, which are amenable to computational modeling. Gas-phase exchange reactions of UO2+, NpO2+, PuO2+, and UO22+ with water and methanol were studied by experiment and density functional theory (DFT); reported for the first time are experimental results for UO22+ and for methanol exchange, as well as exchange rate constants. Key findings are faster exchange of UO22+ versus UO2+ and faster exchange with methanol versus water; faster exchange of UO2+ versus PuO2+ was quantified. Computed potential energy profiles (PEPs) are in accord with the observed kinetics, validating the utility of DFT to model these exchange processes. The seemingly enigmatic result of faster exchange for uranyl, which has the strongest oxo-bonds, may reflect reduced covalency in uranyl as compared with plutonyl.
DOI http://dx.doi.org/10.1021/ic402824k
ISBN
Publisher
Book Title
ISSN 0020-1669
EISSN 1520-510X
Conference Name
Bibtex ID ISI:000332144100038
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