High pressure mediated physical properties of Hf2AB (A = Pb, Bi) via DFT calculations
M. S. Hossain, N. Jahan, M. M. Hossain, M. M. Uddin, M. A. Ali

TL;DR
This study uses DFT calculations to explore how high pressure influences the structural, mechanical, electronic, thermal, and optical properties of Hf2AB borides, revealing potential applications in thermal barriers and solar protection.
Contribution
It provides a comprehensive analysis of pressure effects on Hf2AB borides' properties, highlighting their stability and suitability for specific technological applications.
Findings
Lattice constants decrease with pressure, matching experimental data at 0 GPa.
Mechanical stability and ductility are maintained up to 50 GPa.
Thermal and optical properties improve or remain stable under pressure.
Abstract
Using density functional theory (DFT), the structural, mechanical, electronic, thermal, and optical properties of Hf2AB (A = Pb, Bi) borides were studied, considering the pressure effect up to 50 GPa. The lattice constants were found to be decreased with increasing pressure wherein the lattice constants at 0 GPa agree well with the reported values. The stability (mechanical and dynamical) of the titled compounds at different pressures was checked. The mechanical behavior was disclosed considering the bulk modulus, shear modulus, Youngs modulus, Pugh ratio, Poissons ratio, and hardness parameter at different pressures. Pugh and Poisson ratios were used to assess the brittleness and ductility of the titled borides. The anisotropic nature of mechanical properties was studied by calculating different indices and plotting 2D and 3D projections of the elastic moduli. The electronic properties…
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