Publication | Closed Access
Reaction of Plutonium Dioxide with Water: Formation and Properties of PuO <sub>2+</sub> <sub> <i>x</i> </sub>
274
Citations
9
References
2000
Year
Materials ScienceInorganic ChemistryChemical EngineeringEngineeringSlow KineticsFluorite-related PuoOxide ElectronicsPlutonium DioxidePhysical ChemistryStable Binary OxideNuclear MaterialsChemistryRadiation ChemistryChemical Kinetics
Results show that PuO(2+x), a high-composition (x </= 0.27) phase containing Pu(VI), is the stable binary oxide in air. This nonstoichiometric oxide forms by reaction of dioxide with water and by water-catalyzed reaction of dioxide with oxygen. The PuO(2) + H(2)O reaction rate is 0.27 nanomoles per meter squared per hour at 25 degrees C; the activation energy at 25 degrees to 350 degrees C is 39 kilojoules per mole. Slow kinetics and a low lattice parameter-composition dependence for fluorite-related PuO(2+x) are consistent with a failure to observe the phase in earlier studies. Perplexing aspects of plutonium oxide chemistry can now be explained.
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