On the origin of the cation templated self-assembly of uranyl-peroxide nanoclusters

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Abstract

Uranyl-peroxide nanoclusters display different topologies based on square, pentagonal and hexagonal building blocks. Computed complexation energies of different cations (Li+, Na+, K+, Rb +, and Cs+) with [UO2(O2)(H 2O)]n (n = 4, 5, and 6) macrocycles suggest a strong cation templating effect. The inherent bent structure of a U-O2-U model dimer is demonstrated and justified through the analysis of its electronic structure, as well as of the inherent curvature of the four-, five-, and six-uranyl macrocyles. The curvature is enhaced by cation coordination, which is suggested to be the driving force for the self-assembly of the nanocapsules. © 2010 American Chemical Society.

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Miró, P., Pierrefixe, S., Gicquel, M., Gil, A., & Bo, C. (2010). On the origin of the cation templated self-assembly of uranyl-peroxide nanoclusters. Journal of the American Chemical Society, 132(50), 17787–17794. https://doi.org/10.1021/ja1053175

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