Investigation of the Optical Properties for Quaternary Se60−xGe35Ga5Sbx (x = 0, 5, and 10) Chalcogenide Glass
Abstract
:1. Introduction
2. Materials and Methods
3. Results and Discussion
3.1. Structure Identification of Thin Films
3.1.1. Electron Dispersive X-ray Spectroscopy (EDX)
3.1.2. X-ray Diffraction (XRD) Characterization
3.2. Optical Properties of Se60−xGe35Ga5Sbx (x = 0, 5, 10 at. %) Thin-Films
3.2.1. Transmittance and Reflectance of the Spectral Distribution for Studied Films
3.2.2. Estimation of the film thickness and the refractive index n
3.2.3. Estimation of the Optical Constants k
- In the case of the strong absorption region where the minima and maxima interference merge to a single curve , the absorbance x was given by:
- In the case of the weak and medium absorption region, the absorbance x is calculated in terms of the interference extremes by the following equation:
3.2.4. The Analysis of Absorption Coefficient and the Calculation of Optical Energy Gap
3.2.5. Determination of the Dielectric Constants , ) at High Frequency
3.2.6. Wemple–DiDomenico Model for Dispersion Energy Parameters
Film Composition | εs | ||||
---|---|---|---|---|---|
Se60Ge35Ga5 | 17.426 ± 0.0693 | 3.375 ± 0.0905 | 2.48 | 6.16 | 1.687 |
Se55Ge35Ga5Sb5 | 18.507 ± 0.0696 | 2.874 ± 0.0880 | 2.7 | 7.439 | 1.437 |
Se50Ge35Ga5Sb10 | 18.747 ± 0.0686 | 2.564 ± 0.0873 | 2.882 | 8.31 | 1.282 |
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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X | Se (at. %) | Ge (at. %) | Ga (at. %) | Sb (at. %) | The Actual Formula |
---|---|---|---|---|---|
0 | 60.59 | 32.20 | 7.21 | 0 | |
5 | 53.12 | 37.80 | 6.01 | 3.07 | |
10 | 50.88 | 36.85 | 5.47 | 6.80 |
Compositions | b | |
---|---|---|
2.1726 | ||
2.6897 | ||
3.0124 |
Film Composition | ||||
---|---|---|---|---|
21.3 | 1.49 | 2.6 | 1.85 | |
30 | 2.47 | 1.95 | 1.4 | |
37 | 1.37 | 1.85 | 1.2 |
Bond | Bond Energy (kcal/mol) |
---|---|
Sb–Sb | 30.22 |
Ge–Sb | 33.76 |
Ge–Ge | 37.60 |
Se–Se | 44.04 |
Sb–Se | 43.98 |
Ge–Se | 49.44 |
Film Composition | λo (nm) | ||||
---|---|---|---|---|---|
5.71 ± 0.0980 | 5.166 ± 0.00012 | 1.227 × | 2.49 × | 446.65 | |
8.69 ± 0.1647 | 7.273 ± 0.000065 | 2.454 × | 2.85 × | 492.16 | |
9.85 ± 0.1647 | 8.127 ± 0.000059 | 3.681 × | 3.28 × | 534.88 |
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Abou-Elnour, H.A.; Osman, M.B.S.; Fadel, M.; Shakra, A.M. Investigation of the Optical Properties for Quaternary Se60−xGe35Ga5Sbx (x = 0, 5, and 10) Chalcogenide Glass. Materials 2022, 15, 6403. https://doi.org/10.3390/ma15186403
Abou-Elnour HA, Osman MBS, Fadel M, Shakra AM. Investigation of the Optical Properties for Quaternary Se60−xGe35Ga5Sbx (x = 0, 5, and 10) Chalcogenide Glass. Materials. 2022; 15(18):6403. https://doi.org/10.3390/ma15186403
Chicago/Turabian StyleAbou-Elnour, Huda Allah, M. B. S. Osman, M. Fadel, and A. M. Shakra. 2022. "Investigation of the Optical Properties for Quaternary Se60−xGe35Ga5Sbx (x = 0, 5, and 10) Chalcogenide Glass" Materials 15, no. 18: 6403. https://doi.org/10.3390/ma15186403
APA StyleAbou-Elnour, H. A., Osman, M. B. S., Fadel, M., & Shakra, A. M. (2022). Investigation of the Optical Properties for Quaternary Se60−xGe35Ga5Sbx (x = 0, 5, and 10) Chalcogenide Glass. Materials, 15(18), 6403. https://doi.org/10.3390/ma15186403