Issue 45, 2014

Layered uranium(vi) hydroxides: structural and thermodynamic properties of dehydrated schoepite α-UO2(OH)2

Abstract

The structure of dehydrated schoepite, α-UO2(OH)2, was investigated using computational approaches that go beyond standard density functional theory and include van der Waals dispersion corrections (DFT-D). Thermal properties of α-UO2(OH)2, were also obtained from phonon frequencies calculated with density functional perturbation theory (DFPT) including van der Waals dispersion corrections. While the isobaric heat capacity computed from first-principles reproduces available calorimetric data to within 5% up to 500 K, some entropy estimates based on calorimetric measurements for UO3·0.85H2O were found to overestimate by up to 23% the values computed in this study.

Graphical abstract: Layered uranium(vi) hydroxides: structural and thermodynamic properties of dehydrated schoepite α-UO2(OH)2

Article information

Article type
Paper
Submitted
12 Aug 2014
Accepted
08 Oct 2014
First published
08 Oct 2014

Dalton Trans., 2014,43, 17191-17199

Layered uranium(VI) hydroxides: structural and thermodynamic properties of dehydrated schoepite α-UO2(OH)2

P. F. Weck and E. Kim, Dalton Trans., 2014, 43, 17191 DOI: 10.1039/C4DT02455A

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