DOE OSTI · 3030181
Understanding the Electronic Behavior of f-Element Intermetallics
Abstract
Due to their partially filled f-orbitals, lanthanide and actinide intermetallic materials exhibit intriguing electronic, structural, and magnetic properties. These materials provide a unique platform to explore exotic magnetic and quantum phenomena that arise from their strongly correlated f-electrons, offering insights into f-electron behavior. Incorporating light elements such as boron and carbon can significantly impact the electronic, chemical, and physical properties of these materials, with varying influence between lanthanides and actinides due to the more localized f-electrons in lanthanides. In this work, lanthanide-based intermetallic single crystals containing light atoms were synthesized using the molten metal flux growth method. In this method, one or more low-melting metals such as aluminum, gallium, tin, and bismuth are used in excess as the reaction medium. This solution-state approach allows for lower reaction temperatures compared to solid-state reactions and enables the isolation of kinetic products rather than thermodynamically stable compounds. The synthesized crystals were analyzed using an extensive array of analytical and computational characterization techniques, including single crystal X-ray diffraction, scanning electron microscopy, energy-dispersive spectroscopy, magnetization measurements, and density functional theory calculations. These analyses provided detailed insights into the structural and magnetic properties of the synthesized materials.
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Jayasinghe, Ashini Shamindra [Idaho National Laboratory] (ORCID:0000000157945556), Gofryk, Krzysztof [Idaho National Laboratory] (ORCID:0000000286816857), Zhou, Shuxiang [Idaho National Laboratory] (ORCID:0000000250291251). 2025-08-20. Understanding the Electronic Behavior of f-Element Intermetallics. https://www.osti.gov/biblio/3030181
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