Abstract
The electronic structure, thermal and optical properties of KSr2Nb5O15 with Bi3+ doping (KSN-Bi) and Y3+ doping (KSN-Y) are studied using first principles. When Bi3+ and Y3+ doping in the KSN, the band gap becomes smaller and satisfies to KSN > KSN-Bi > KSN-Y, the original tetragonal structure changes to be orthorhombic due to the great distortion of Nb-O octahedron affected by Bi3+ and Y3+. The specific heat capacity under constant volume Cv, specific heat capacity under constant pressure Cp, entropy Svib, thermal expansion coefficient α(T) and volume change decreased after doping. The calculated Gibbs results suggest that KSN-Y is more stable than KSN-Bi. Furthermore, the dielectric constant is increased and the imaginary part of dielectric function decreased, while the refraction property is increased and reflectivity is decreased after Bi3+ and Y3+ doping. Both the KSN-Bi and KSN-Y show ultraviolet absorption in 100–400 nm, refractivity in 0–5 eV and reflectivity 5–8 eV. KSN-Bi and KSN-Y show optical anisotropy properties and KSN-Bi has better optical properties than that of KSN-Y.
Original language | English |
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Article number | 114753 |
Journal | Materials Science and Engineering: B |
Volume | 262 |
DOIs | |
State | Published - Dec 2020 |
Keywords
- Bi-doped KSrNbO
- Electronic structure
- First principles
- Optical properties
- Thermal properties
- Y-doped KSrNbO