| Literature DB >> 35520698 |
Sajad Ahmad Dar1, Ramesh Sharma2, Vipul Srivastava3, Umesh Kumar Sakalle4.
Abstract
In the present paper, double perovskite Ba2InTaO6 was investigated in terms of its structural, electronic, optical, elastic, mechanical, thermodynamic and thermoelectric properties using density-functional theory (DFT). The generalized gradient approximation (GGA) in the scheme of Perdew, Burke and Ernzerhof (PBE) and the modified Becke-Johnson (mBJ) potential were employed for the exchange-correlation potential. The computed lattice constant was found to be in agreement with the available experimental and theoretical results. The electronic profile shows a semiconducting nature. Further analysis of the complex dielectric constant ε(ω), refractive index n(ω), reflectivity R(ω), absorption coefficient α(ω), optical conductivity (ω) and energy loss function were also reported with the incident photon energy. The elastic constants were also calculated and used to determine mechanical properties like Young's modulus (Y), the shear modulus (G), Poisson's ratio (ν) and the anisotropic factor (A). The electrical conductivity (σ/τ) and Seebeck coefficient (S) also demonstrated the semiconducting nature of the compound with electrons as the majority carriers. The value of the power factor was calculated to be 1.20 × 1012 W K-2 m-1 s-1 at 1000 K. From thermodynamic investigations, the heat capacity and Grüneisen parameter were also predicted. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35520698 PMCID: PMC9062195 DOI: 10.1039/c9ra00313d
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Lattice constant (Å), unit cell volume (a.u)3, bulk modulus (B in GPa), derivative of the bulk modulus (B′), ground-state energy (E0 inRy) and bond lengths (Å) calculated and compared with the experimental and theoretical values of Ba2InTaO6
| Ba2InTaO6 | Present | Other |
|---|---|---|
| Lattice constant | 8.362 | 8.28 ( |
| 8.70 ( | ||
| 8.28 ( | ||
| 8.29 ( | ||
| Volume | 986.67 | — |
|
| 155 | 142 ( |
|
| 4.58 | 4.64( |
| Ba–O | 2.93 | 2.92 ( |
| Δ | −2626.72 | |
| In–O | 2.13 | 2.11 ( |
| Ta–O | 2.03 | 2.02 ( |
| Bandgap | ||
| GGA (eV) | 4.0 | 4.17 ( |
| 3.82 ( | ||
| mBJ (eV) | 5.0 |
Fig. 1(a) Crystal structure of Ba2InTaO6; (b) calculated total energy as a function of volume for ferromagnetic (FM) and non-magnetic (NM) phases for Ba2InTaO6.
Fig. 2Band structure for Ba2InTaO6 within (a) GGA (b) mBJ.
Fig. 3Combined total and partial density of states for Ba2InTaO6 within (a) GGA (b) mBJ.
Calculated elastic constants C11, C12, C44 in (GPa), the bulk modulus B (GPa), the shear modulus G (GPa), Young's modulus Y (GPa), Poisson's ratio ν, the Zener anisotropy factor A, the B/G ratio, Cauchy pressure C12–C44 and the melting temperature Tm (K) for Ba2InTaO6 under ambient conditions
| GGA | Ba2InTaO6 |
|---|---|
|
| 282.67 |
|
| 91.39 |
|
| 85.22 |
|
| 155 |
|
| 89.38 |
|
| 89.10 |
|
| 89.24 |
|
| 224.64 |
|
| 0.2587 |
|
| 1.73 |
|
| 6.13 |
|
| 0.891 |
|
| 2223 ± 300 |
Fig. 4Optical spectrum of the dielectric constant as a function of the photon energy of Ba2InTaO6 within (a) GGA (b) mBJ. (c) Calculated absorption spectrum of Ba2InTaO6 within (a) GGA (b) mBJ. (d) and (e) Refractive index spectrum of Ba2InTaO6 within (a) GGA (b) mBJ. (f) Reflectivity spectrum of Ba2InTaO6 within (a) GGA (b) mBJ. (g) Transmittance spectrum of Ba2InTaO6 within (a) GGA (b) mBJ. (h) Optical conductivity spectrum of Ba2InTaO6 within (a) GGA (b) mBJ. (i) Optical spectrum of the electron loss spectrum as a function of the photon energy of Ba2InTaO6 within GGA and mBJ.
Calculated dielectric constant ε1(ω), absorption coefficient α(ω), refractive index n(ω) extinction coefficient k(ω) and reflectivity R(ω) of the real part of optical conductivity Re[σ(ω)] and the energy-loss function L(ω) of Ba2InTaO6 (in arbitrary unit)
| Optical properties | Ba2InTaO6 | |
|---|---|---|
| GGA |
| 4.05 |
|
| 4.35 | |
|
| 2.01 | |
|
| 1.67 | |
|
| 0.11 | |
|
| 6630.15 | |
| mBJ |
| 2.94 |
|
| 5.56 | |
|
| 1.71 | |
|
| 1.51 | |
|
| 0.07 | |
|
| 6378.86 | |
Fig. 5(a) Variation of electrical conductivity (σ/τ) as a function of temperature for Ba2InTaO6 compound. (b) Temperature-dependent Seebeck coefficient (S) as a function of temperature for the Ba2InTaO6 compound. (c) Temperature-dependent electronic thermal conductivity (S) as a function of temperature for the Ba2InTaO6 compound. (d) Calculated power factor (PF) as a function of temperature for the Ba2InTaO6 compound.
Fig. 6(a) Volume as a function of temperature and pressure for Ba2InTaO6. (b) Bulk modulus variation with temperature and pressure for Ba2InTaO6. (c) Specific heat capacity (Cv) as a function of temperature and pressure for Ba2InTaO6. (d) Grüneisen parameter (γ) as a function of temperature and pressure for Ba2InTaO6.