Abstract
A wide range of uranyl–peroxide nanocapsules have been synthesized using very simple reactants in basic media; however, little is known about the process to form these species. We have performed a density functional theory study of the speciation of the uranyl ions under different experimental conditions and explored the formation of dimeric species via a ligand exchange mechanism. We shed some light onto the importance of the excess of peroxide and alkali counterions as a thermodynamic driving force towards the formation of larger uranyl–peroxide species.
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Miró, P., Vlaisavljevich, B., Gil, A., Burns, P. C., Nyman, M., & Bo, C. (2016). Self-Assembly of Uranyl–Peroxide Nanocapsules in Basic Peroxidic Environments. Chemistry - A European Journal, 22(25), 8571–8578. https://doi.org/10.1002/chem.201600390
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