In this research, we use first-principles calculations based on density functional theory (DFT) to investigate the electro-optical performance of a three-dimensional T-carbon nanostructure. In addition to analyzing the dynamic and static stability of the optimized structure of the T-carbon unit cell, as new research, the electro-optical properties of T-carbon, under the effect of omnidirectional hydrostatic stress on the unit cell up to 9 GPa, were simulated by using computational codes. The obtained results indicate the acceptable performance of this nanostructure as a suitable optical absorbent material. This three-dimensional nanostructure can be used to design innovative components such as electro-optical sensors, light intensifiers, optical detectors, and organic perovskite solar cells.
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Alborznia,H . (2024). Investigation of the performance of T-carbon ِnanostructure as optical absorbing material under hydrostatic stress. Iranian Journal of Physics Research, 24(2), 255-262. doi: 10.47176/ijpr.24.2.51897
MLA
Alborznia,H . "Investigation of the performance of T-carbon ِnanostructure as optical absorbing material under hydrostatic stress", Iranian Journal of Physics Research, 24, 2, 2024, 255-262. doi: 10.47176/ijpr.24.2.51897
HARVARD
Alborznia H. (2024). 'Investigation of the performance of T-carbon ِnanostructure as optical absorbing material under hydrostatic stress', Iranian Journal of Physics Research, 24(2), pp. 255-262. doi: 10.47176/ijpr.24.2.51897
CHICAGO
H Alborznia, "Investigation of the performance of T-carbon ِnanostructure as optical absorbing material under hydrostatic stress," Iranian Journal of Physics Research, 24 2 (2024): 255-262, doi: 10.47176/ijpr.24.2.51897
VANCOUVER
Alborznia H. Investigation of the performance of T-carbon ِnanostructure as optical absorbing material under hydrostatic stress. Iranian Journal of Physics Research. 2024;24(2):255-262 (In Persian). doi: 10.47176/ijpr.24.2.51897