Araştırma Makalesi

Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study

Cilt: 14 Sayı: 2 24 Aralık 2024
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Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study

Öz

In this work, graphene oxide-titanium oxide (GO-TiO2) nanocomposite was successfully produced via ultrasonication process. For coating process, spin coating (SC), dip coating (DC) and spray coating methods were used. The synthesized nanocomposite and surfaces were characterized by optical microscope, SEM, EDX, FTIR, XRD, four-probe conductivity, water contact angle. As result of experiments, while spin coating provides thinner coating, a thicker and higher water contact angle surface was formed under the optimum condition of dip coating. XRD, four-probe conductivity results revealed partial formation of reduced graphene oxide within the composite structure. Water contact angle results showed that the best result regarding stability of droplet shape was on the spin coated surface. On the other hand, it was observed that deionized water test liquid droplet on the dip coated surfaces stabilized relatively slower but provided a much higher water contact angle.

Anahtar Kelimeler

Proje Numarası

120M992BSEU

Teşekkür

This study was compiled from the results of the study carried out within the scope of project number 120M992BSEU supported by The Scientific and Technological Research Council of Turkey (TÜBİTAK). The researchers thank TÜBİTAK.

Kaynakça

  1. [1] Hummers, W. S., & Offeman, R. E. (1958). Preparation of Graphitic Oxide. Journal of the American Chemical Society, 80(6), 1339.
  2. [2] Aydin, H. (2019). The effect of graphene oxide on the structural and electrical properties of yttrium ferrite based nanopowders. European Journal of Technique (EJT), 9(1), 84-98.
  3. [3] Aydin, C. (2018). The Characterization of Morphology, Chemical and Optical Properties of Perylene Based Organic Nanocomposites Modified with Graphene Oxide. European Journal of Technique (Ejt), 8(1), 99-109.
  4. [4] Chen, X., & Mao, S. S. (2007). Titanium dioxide nanomaterials: Synthesis, properties, modifications, and applications. Chemical Reviews, 107(7), 2891-2959.
  5. [5] Liu, X., Chen, C., Chen, X. A., Qian, G., Wang, J., Wang, C., ... & Liu, Q. (2018). WO3 QDs enhanced photocatalytic and electrochemical perfomance of GO/TiO2 composite. Catalysis Today, 315, 155-161.
  6. [6] Acir, A., Emin Canlı, M., Ata, I., & Erdi Tanürün, H. (2019). Effects of a circular-shaped turbulator having varying hole numbers on energy and exergy efficiencies of a solar air heater. International Journal of Ambient Energy, 40(7), 739-748.
  7. [7] Acir, A., Canli, M. E., Ata, I., Uzun, S., & Tanürün, H. E. (2021). Experimental Investigation of Thermal Energy Storage Efficiency Using Fin Application with Phase Change Material (PCM) under solar radiation. Heat Transfer Research, 52(6).
  8. [8] Kamat, P. V. (2010). Graphene-based nanoarchitectures. Anchoring semiconductor and metal nanoparticles on a two-dimensional carbon support. The Journal of Physical Chemistry Letters, 1(2), 520-527.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği (Diğer)

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

13 Ocak 2025

Yayımlanma Tarihi

24 Aralık 2024

Gönderilme Tarihi

20 Ağustos 2024

Kabul Tarihi

9 Eylül 2024

Yayımlandığı Sayı

Yıl 2024 Cilt: 14 Sayı: 2

Kaynak Göster

APA
Balkaya, İ. F. (2024). Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study. European Journal of Technique (EJT), 14(2), 174-181. https://doi.org/10.36222/ejt.1536083
AMA
1.Balkaya İF. Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study. EJT. 2024;14(2):174-181. doi:10.36222/ejt.1536083
Chicago
Balkaya, İbrahim Fırat. 2024. “Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study”. European Journal of Technique (EJT) 14 (2): 174-81. https://doi.org/10.36222/ejt.1536083.
EndNote
Balkaya İF (01 Aralık 2024) Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study. European Journal of Technique (EJT) 14 2 174–181.
IEEE
[1]İ. F. Balkaya, “Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study”, EJT, c. 14, sy 2, ss. 174–181, Ara. 2024, doi: 10.36222/ejt.1536083.
ISNAD
Balkaya, İbrahim Fırat. “Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study”. European Journal of Technique (EJT) 14/2 (01 Aralık 2024): 174-181. https://doi.org/10.36222/ejt.1536083.
JAMA
1.Balkaya İF. Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study. EJT. 2024;14:174–181.
MLA
Balkaya, İbrahim Fırat. “Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study”. European Journal of Technique (EJT), c. 14, sy 2, Aralık 2024, ss. 174-81, doi:10.36222/ejt.1536083.
Vancouver
1.İbrahim Fırat Balkaya. Comparison of Graphene Oxide-Titanium Oxide (GO-TiO2) Composite Film Coating Methods on Glass Substrates and Surface Characterization Study. EJT. 01 Aralık 2024;14(2):174-81. doi:10.36222/ejt.1536083