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Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO

Cilt: 15 Sayı: 4 1 Aralık 2025
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Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO

Öz

In this study, the optical and electronic properties of ZnO thin films were systematically investigated using both experimental methods and density functional theory (DFT) calculations. Structural optimizations and electrofilmnic property analyses were conducted using the PBE exchange–correlation functional. The results confirm that ZnO is a direct band gap semiconductor; however, the theoretically calculated band gap (0.87 eV) was significantly lower than the experimentally determined value (3.40 eV), consistent with the well-known underestimation problem of conventional DFT. This highlights the necessity of employing advanced computational methods such as hybrid functionals or GW corrections for precise band gap estimations. Despite the numerical discrepancy in band gap values, a strong spectral agreement was observed between the theoretical and experimental optical parameters, including the absorption coefficient, extinction coefficient, refractive index, and dielectric constants. Both methods indicated prominent optical transitions around 3.2–3.4 eV, especially in the UV region. Additionally, XRD and SEM analyses revealed high crystallinity and a homogeneous nanostructured morphology.

Anahtar Kelimeler

Kaynakça

  1. Agarwal, S., Jangir, L. K., Rathore, K. S., Kumar, M., & Awasthi, K. (2019). Morphology-dependent structural and optical properties of ZnO nanostructures. Applied Physics A, 125(8), 553.
  2. Al-Ariki, S., Yahya, N. A., Al-A’nsi, S. A. A., Jumali, M. H., Jannah, A. N., & Abd-Shukor, R. (2021). Synthesis and comparative study on the structural and optical properties of ZnO doped with Ni and Ag nanopowders fabricated by sol gel technique. Scientific Reports, 11(1), 11948.
  3. Alsaad, A. M., Al-Bataineh, Q. M., Ahmad, A. A., Albataineh, Z., & Telfah, A. (2020). Optical band gap and refractive index dispersion parameters of boron-doped ZnO thin films: A novel derived mathematical model from the experimental transmission spectra. Optik, 211, 164641.
  4. Amakali, T., Daniel, L. S., Uahengo, V., Dzade, N. Y., & De Leeuw, N. H. (2020). Structural and optical properties of ZnO thin films prepared by molecular precursor and sol–gel methods. Crystals, 10(2), 132.
  5. Alharshan, G. A., Aboraia, A. M., Uosif, M. A., Sharaf, I. M., Shaaban, E. R., Saad, M., ... & Elsenety, M. M. (2023). Optical band gap tuning, DFT understandings, and photocatalysis performance of ZnO nanoparticle-doped Fe compounds. Materials, 16(7), 2676.
  6. Ayana, A., Gummagol, N. B., Patil, P. S., Sharma, P., & Rajendra, B. V. (2024). Nonlinear optical properties of zinc oxide thin films. Optics & Laser Technology, 175, 110820.
  7. Baizid, A., Mokadem, A., Ouerdane, A., Guezzoul, M. H., Bouslama, M. H., Benchenane, H., ... & Halati, M. S. (2021). First principles calculation of structural, electronic and optical properties of K-doped ZnO. Computational Condensed Matter, 27, e00558.
  8. Bashyal, K., Pyles, C. K., Afroosheh, S., Lamichhane, A., & Zayak, A. T. (2018). Empirical optimization of DFT+ U and HSE for the band structure of ZnO. Journal of Physics: Condensed Matter, 30(6), 065501.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Yoğun Madde Modellemesi ve Yoğunluk Fonksiyonel Teorisi, Yoğun Maddenin Yapısal Özellikleri, Yoğun Maddenin Yüzey Özellikleri, Yoğun Madde Fiziği (Diğer)

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

27 Kasım 2025

Yayımlanma Tarihi

1 Aralık 2025

Gönderilme Tarihi

26 Mayıs 2025

Kabul Tarihi

30 Haziran 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 15 Sayı: 4

Kaynak Göster

APA
Gültekin, Z. (2025). Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO. Journal of the Institute of Science and Technology, 15(4), 1329-1342. https://doi.org/10.21597/jist.1706353
AMA
1.Gültekin Z. Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO. Iğdır Üniv. Fen Bil Enst. Der. 2025;15(4):1329-1342. doi:10.21597/jist.1706353
Chicago
Gültekin, Zafer. 2025. “Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO”. Journal of the Institute of Science and Technology 15 (4): 1329-42. https://doi.org/10.21597/jist.1706353.
EndNote
Gültekin Z (01 Aralık 2025) Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO. Journal of the Institute of Science and Technology 15 4 1329–1342.
IEEE
[1]Z. Gültekin, “Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO”, Iğdır Üniv. Fen Bil Enst. Der., c. 15, sy 4, ss. 1329–1342, Ara. 2025, doi: 10.21597/jist.1706353.
ISNAD
Gültekin, Zafer. “Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO”. Journal of the Institute of Science and Technology 15/4 (01 Aralık 2025): 1329-1342. https://doi.org/10.21597/jist.1706353.
JAMA
1.Gültekin Z. Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO. Iğdır Üniv. Fen Bil Enst. Der. 2025;15:1329–1342.
MLA
Gültekin, Zafer. “Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO”. Journal of the Institute of Science and Technology, c. 15, sy 4, Aralık 2025, ss. 1329-42, doi:10.21597/jist.1706353.
Vancouver
1.Zafer Gültekin. Theoretical and Experimental Comparison of the Properties of Hexagonal Wurtzite ZnO. Iğdır Üniv. Fen Bil Enst. Der. 01 Aralık 2025;15(4):1329-42. doi:10.21597/jist.1706353

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