DFT based insights into elastic, thermophysical, electronic and optical properties of topological insulators XTe5 (X = Zr, Hf)
2025/04/22 by Mahin, Syed Shovon Mahbub, Barua, Suptajoy, Rano, B. Rahman +2
#FOS: Physical sciences #Materials Science (cond-mat.mtrl-sci)
paper · doi:10.48550/arxiv.2504.16184
Abstract
Transition metal penta-tellurides, ZrTe5 and HfTe5 have been recently drawn a lot of attention due to their fascinating physical properties and for being prominent materials showing topological phase transitions. In this study, we investigated mechanical, thermophysical and optoelectronic properties of these materials which remained almost unexplored till now. We also studied electronic properties and compared those with previous studies. We used Density Functional Theory (DFT) based calculations to study all of these properties. This study suggests that the materials are mechanically stable, possess high mechanical and bonding anisotropy and are brittle in nature. Our study also suggests that the compounds are soft in nature and they contain a mixture of covalent and metallic bonding. Investigation of thermophysical properties, namely, Grüneisen parameter and Debye temperature indicates weak bonding strength in these compounds. Analysis of melting temperature, thermal expansion coefficient, heat capacity, radiation factor, acoustic impedance, and minimum thermal conductivity suggests their possible application in acoustic and thermoelectric devices. Examination of their optical characteristics reveals that they have a considerable reflectivity from the infrared to the ultraviolet region. The refractive indices of these materials are high at low energy so they are potential candidates for reflective coating of solar radiation. There have been debates over exact topological natures of these compounds, whether they are semi-metals or insulators. Our study of electronic band structure and density of states reveal that spin-orbit interaction is responsible for enhancing energy gaps and promoting insulating characteristics in these compounds.
Citations
- Massive topological edge channels in three-dimensional topological materials induced by extreme surface anisotropy
- Comparative analysis of physical properties of some binary transition metal carbides XC (X = Nb, Ta, Ti): Insights from a comprehensive ab-initio study
- An ab initio approach to understand the structural, thermophysical, electronic, and optical properties of binary silicide SrSi2: A double Weyl semimetal
- Strain-tuned topological phase transition and unconventional Zeeman effect in ZrTe5 microcrystals
- First-principles insights into the mechanical, optoelectronic, thermophysical, and lattice dynamical properties of binary topological semimetal BaGa2
- Magneto-transport evidence for strong topological insulator phase in ZrTe5
- First-principles prediction of pressure dependent mechanical, electronic, optical, and superconducting state properties of NaC6: A potential high-Tc superconductor
- Thermal diffusivity and its lower bound in orthorhombic SnSe
- Electronic band structure, elastic, optical and thermodynamic characteristic of cubic YF3: An ab initio study
- Phonon softening near topological phase transitions
- Nature of native atomic defects in ZrTe5 and their impact on the low-energy electronic structure
- Unraveling the Topological Phase of ZrTe5 via Magneto-infrared Spectroscopy
- Structural, elastic, electronic, bonding, and optical properties of topological CaSn3 semimetal
- Ab initio approach to the elastic, electronic, and optical properties of MoTe2: A topological Weyl semimetal
- Dirac electron behavior and NMR evidence for topological band inversion in ZrTe5
- Two-dimensional conical dispersion in ZrTe5 evidenced by optical spectroscopy
- Temperature-driven Topological Phase Transition and Intermediate Dirac Semimetal Phase in ZrTe5
- Three-dimensional quantum Hall effect and metal-insulator transition in ZrTe5
- Giant Planar Hall Effect in the Dirac Semimetal ZrTe5
- Topological insulator materials for advanced optoelectronic devices
- First-principles study of superconducting ScRhP and ScIrP pnictides
- 3D nature of ZrTe5 band structure measured by high-momentum-resolution photoemission spectroscopy
- WannierTools: An open-source software package for novel topological materials
- Mechanical behavior, bonding nature, and defect processes of Mo2ScAlC2: a new ordered MAX phase
- Bipolar Conduction is the Origin of the Electronic Transition in Pentatellurides: Metallic vs. Semiconducting Behavior
- Transition between strong and weak topological insulator in ZrTe5 and HfTe5
- Evidence for a Strong Topological Insulator Phase in ZrTe5
- Experimental evidence of large-gap two-dimensional topological insulator on the surface of ZrTe5
- Robust topological edge states at the perfect surface step edge of topological insulator ZrTe5
- Colloquium: Topological Band Theory
- Intrinsically core-shell plasmonic dielectric nanostructures with ultrahigh refractive index
- Superconductivity in HfTe5 Induced via Pressures
- Pressure-driven Superconductivity in Transition-metal Pentatelluride HfTe5
- ELATE: An open-source online application for analysis and visualization of elastic tensors
- Electronic Evidence of Temperature-Induced Lifshitz Transition and Topological Nature in ZrTe5
- Topological Critical Point and Resistivity Anomaly in HfTe5
- Ultrafast Optical Control of the Electronic Properties of ZrTe5
- Magneto-infrared spectroscopy of Landau levels and Zeeman splitting of three-dimensional massless Dirac Fermions in ZrTe5
- Topological Surface States Originated Spin-Orbit Torques in Bi2Se3
- Observation of the chiral magnetic effect in ZrTe5
- Necessary and Sufficient Elastic Stability Conditions in Various Crystal Systems
- Mechanical and electronic properties of Ti2AlN and Ti4AlN3: a first-principles study
- Topological Superconductor Bi2Te3/NbSe2 heterostructures
- Transition-Metal Pentatelluride ZrTe5 and HfTe5: a Paradigm for Large-gap Quantum Spin Hall Insulators
- The Coexistence of Superconductivity and Topological Order in the Bi2Se3 Thin Films
- Poisson's ratio and modern materials
- Computing topological invariants without inversion symmetry
- Intrinsic Correlation between Hardness and Elasticity in Polycrystalline Materials and Bulk Metallic Glasses
- Theoretical investigation on the transition metal borides with Ta3B4-type structure: a class of hard and refractory materials
- An equivalent expression of Z2 Topological Invariant for band insulators using Non-Abelian Berry's connection
- Topological insulators and superconductors
- High-throughput electronic band structure calculations: challenges and tools
- Superconductivity in CuxBi2Se3 and its implications for pairing in the undoped topological insulator
- Anomalous Hall effect
- Ab‐initiosimulations of materials using VASP: Density‐functional theory and beyond
- Materials selection guidelines for low thermal conductivity thermal barrier coatings
- Density functional theory for calculation of elastic properties of orthorhombic crystals: Application to TiSi2
- Generalized Gradient Approximation Made Simple
- Projector augmented-wave method
- Self-interaction correction to density-functional approximations for many-electron systems
- A technique for relativistic spin-polarised calculations
- Special points for Brillouin-zone integrations
- Self-Consistent Equations Including Exchange and Correlation Effects
- On the stability of crystal lattices. I
- Berechnung der Fließgrenze von Mischkristallen auf Grund der Plastizitätsbedingung für Einkristalle .
- Ueber die Beziehung zwischen den beiden Elasticitätsconstanten isotroper Körper
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