Abstract
Quantum chemical calculations were performed to understand the formation of nanoscale cage clusters based on uranyl ions. We investigated the uranyl-peroxide-uranyl interaction and compared the geometries of clusters with and without such interactions. We show that a covalent interaction along the U-Operoxo bonds causes the U-O2-U dihedral angle to be bent, and it is this inherent bending of the configuration that encourages curvature and cage cluster formation. The U-O2-U dihedral angle of the peroxo bridge is tuned by the size or electronegativity of the counterion present. © 2010 American Chemical Society.
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CITATION STYLE
Vlaisavljevich, B., Gagliardi, L., & Burns, P. C. (2010). Understanding the structure and formation of uranyl peroxide nanoclusters by quantum chemical calculations. Journal of the American Chemical Society, 132(41), 14503–14508. https://doi.org/10.1021/ja104964x
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