Uncovering the Origin of Divergence in the CsM(CrO<sub>4</sub>)<sub>2</sub> (M = La, Pr, Nd, Sm; Am) Family through Examination of the Chemical Bonding in a Molecular Cluster and by Band Structure Analysis
ORAL
Abstract
A series of f-block chromates, CsM(CrO4)2 (M = La, Pr, Nd, Sm; Am), were prepared revealing notable differences between the AmIII derivative and its lanthanide analogs. While all compounds form similar layered structures, the americium compound exhibits polymorphism and adopts both a structure isomorphous with the early lanthanides as well as one that possesses lower symmetry. Both polymorphs are dark red and possess band gaps that are smaller than the LnIII compounds. In order to probe the origin of these differences, the electronic structure of α-CsAm(CrO4)2 was determined computationally using both a molecular cluster approach featuring hybrid density functional theory and QTAIM analysis and by the periodic LDA+GA method. Taken together, these complementary methods demonstrate that while there is Am-O covalency in α-CsAm(CrO4)2, it is driven by the degeneracy of the 5f and 2p orbitals and not by orbital overlap.
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Presenters
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Nicola Lanata
- Florida State University
- Department of Physics and National High Magnetic Field Laboratory, Florida State University