Quantum chemical insights into hexaboride electronic structures: correlations within the boron p-orbital subsystem

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Date
2022
Volume
5
Issue
Journal
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Book Title
Publisher
London : Springer Nature
Abstract

The notion of strong electronic correlations arose in the context of d-metal oxides such as NiO but can be exemplified on systems as simple as the H2 molecule. Here we shed light on correlation effects on B62− clusters as found in MB6 hexaborides and show that the B 2p valence electrons are fairly correlated. B6-octahedron excitation energies computed for CaB6 and YbB6 agree with peak positions found by resonant inelastic x-ray scattering, providing a compelling picture for the latter. Our findings characterize these materials as very peculiar p-electron correlated systems and call for more involved many-body investigations within the whole hexaboride family, both alkaline- and rare-earth compounds, not only for N- but also (N ± 1)-states defining e. g. band gaps.

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Keywords
Alkaline earth metals, Alkalinity, Borides, Energy gap, Nickel oxide, Orbits, Quantum chemistry, Rare earths, X ray scattering, Ytterbium compounds
Citation
Petersen, T., Rößler, U. K., & Hozoi, L. (2022). Quantum chemical insights into hexaboride electronic structures: correlations within the boron p-orbital subsystem. 5. https://doi.org//10.1038/s42005-022-00979-z
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CC BY 4.0 Unported