Finite Temperature and Pressure Properties of Os<sub>2</sub>B<sub>3</sub> from First-Principles Simulation
ORAL
Abstract
Transition metal boride Os2B3 has excellent incompressibility and thermal stability for potential applications in extreme high-pressure high-temperature environments. In this study, we use density functional theory (DFT) to simulate the electronic and mechanical properties of Os2B3. We also perform phonon calculations with the quasiharmonic approximation (QHA) to study finite-temperature and finite-pressure thermodynamic quantities of Os2B3, including its P-V-T curves, phonon spectra, bulk modulus, specific heat, thermal expansion, and the Grüneisen parameter. The comparison of our simulation to experimental P-V-T data underscores the utility of the Armiento-Mattsson 2005 (AM05) DFT functional and QHA for describing thermodynamic properties of solid-state systems.
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Presenters
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Chia-Min Lin
University of Alabama at Birmingham
Authors
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Chia-Min Lin
University of Alabama at Birmingham
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Kaleb Burrage
University of Alabama at Birmingham
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Wei-Chih Chen
University of Alabama at Birmingham
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Yogesh Kumar Vohra
University of Alabama at Birmingham
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Cheng-Chien Chen
University of Alabama at Birmingham