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International Journal of Physics and Applications
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Vol. 5, Issue 1, Part B (2023)

Exploring the optoelectronic and thermodynamic behavior of TlTmS₂: First-principles calculations

Author(s):

RP Singh

Abstract:

In the present study, the optoelectronic and thermodynamic properties of TlTmS2 were investigated using TB-mBJ exchange-correlation functional witching density functional theory. The electronic properties, examined through density of states, demonstrate that TlTmS2 compound is fully spin-polarized, exhibiting half-metallicity. Optical analyses revealed that the dielectric function confirms the metallic nature of the compound and supports the well-established Penn model for TlTmS2 system. Maximum optical absorption was observed in the ultraviolet energy range. Intraband transitions were identified in the infrared and visible regions, attributed to the half-metallic nature of the materials. Additionally, the investigations were broadened to assess the thermodynamic properties, which may indicate the suitability of material for various thermodynamic applications.

Pages: 88-93  |  423 Views  89 Downloads


International Journal of Physics and Applications
How to cite this article:
RP Singh. Exploring the optoelectronic and thermodynamic behavior of TlTmS₂: First-principles calculations. Int. J. Phys. Appl. 2023;5(1):88-93. DOI: 10.33545/26647575.2023.v5.i1b.167
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