The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method

The spinning speed parameter plays a crucial role in determining the properties of an n-TiO2/ZnO bilayer thin film fabricated using the sol–gel spin-coating technique, especially for solar cell applications. In this study, various spinning speeds were employed on an n-TiO2/ZnO bilayer thin film, an...

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Main Authors: Mohamad Arifin, Nurliyana, Mhd Noor, Ervina Efzan, Mohamad, Fariza, Mohamad, Norhidayah
Format: Article
Language:English
Published: Mdpi 2024
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Online Access:http://eprints.uthm.edu.my/10878/1/J17359_8f763550a50f2f98c7d303af8a15fb6f.pdf
http://eprints.uthm.edu.my/10878/
https://doi.org/10.3390/coatings14010073
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spelling my.uthm.eprints.108782024-05-08T02:13:15Z http://eprints.uthm.edu.my/10878/ The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method Mohamad Arifin, Nurliyana Mhd Noor, Ervina Efzan Mohamad, Fariza Mohamad, Norhidayah T Technology (General) The spinning speed parameter plays a crucial role in determining the properties of an n-TiO2/ZnO bilayer thin film fabricated using the sol–gel spin-coating technique, especially for solar cell applications. In this study, various spinning speeds were employed on an n-TiO2/ZnO bilayer thin film, and characterizations were conducted, such as morphological, structural, and optical properties. The findings revealed that the optimal conditions for the thin film were achieved at a spinning speed of 3000 rpm. Under this condition, a homogenous and compact surface morphology was observed, with an even distribution of ZnO grains. The successful fabrication of an n-TiO2/ZnO bilayer thin film was confirmed by the presence of characteristic peaks for both TiO2 and ZnO. Obviously, three dominant ZnO orientation peaks, which included (100), (002), and (101) were identified. The prevalence of the (002)-ZnO orientation plane indicated a high-quality structure with excellent crystallinity. In terms of optical properties, the achievement of high transmittance up to 75% resembles the high transparency of the thin film. The optical energy of the n-TiO2/ZnO bilayer thin film is estimated at 3.10 eV. In summary, the spinning speed parameter played a pivotal role in enhancing various properties of the thin film, making it a significant factor in its development for diverse applications. Mdpi 2024 Article PeerReviewed text en http://eprints.uthm.edu.my/10878/1/J17359_8f763550a50f2f98c7d303af8a15fb6f.pdf Mohamad Arifin, Nurliyana and Mhd Noor, Ervina Efzan and Mohamad, Fariza and Mohamad, Norhidayah (2024) The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method. Coatings, 14 (73). pp. 1-14. https://doi.org/10.3390/coatings14010073
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic T Technology (General)
spellingShingle T Technology (General)
Mohamad Arifin, Nurliyana
Mhd Noor, Ervina Efzan
Mohamad, Fariza
Mohamad, Norhidayah
The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
description The spinning speed parameter plays a crucial role in determining the properties of an n-TiO2/ZnO bilayer thin film fabricated using the sol–gel spin-coating technique, especially for solar cell applications. In this study, various spinning speeds were employed on an n-TiO2/ZnO bilayer thin film, and characterizations were conducted, such as morphological, structural, and optical properties. The findings revealed that the optimal conditions for the thin film were achieved at a spinning speed of 3000 rpm. Under this condition, a homogenous and compact surface morphology was observed, with an even distribution of ZnO grains. The successful fabrication of an n-TiO2/ZnO bilayer thin film was confirmed by the presence of characteristic peaks for both TiO2 and ZnO. Obviously, three dominant ZnO orientation peaks, which included (100), (002), and (101) were identified. The prevalence of the (002)-ZnO orientation plane indicated a high-quality structure with excellent crystallinity. In terms of optical properties, the achievement of high transmittance up to 75% resembles the high transparency of the thin film. The optical energy of the n-TiO2/ZnO bilayer thin film is estimated at 3.10 eV. In summary, the spinning speed parameter played a pivotal role in enhancing various properties of the thin film, making it a significant factor in its development for diverse applications.
format Article
author Mohamad Arifin, Nurliyana
Mhd Noor, Ervina Efzan
Mohamad, Fariza
Mohamad, Norhidayah
author_facet Mohamad Arifin, Nurliyana
Mhd Noor, Ervina Efzan
Mohamad, Fariza
Mohamad, Norhidayah
author_sort Mohamad Arifin, Nurliyana
title The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
title_short The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
title_full The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
title_fullStr The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
title_full_unstemmed The Impact of Spinning Speed on n-TiO2/ZnO Bilayer Thin Film Fabricated through Sol–Gel Spin-Coating Method
title_sort impact of spinning speed on n-tio2/zno bilayer thin film fabricated through sol–gel spin-coating method
publisher Mdpi
publishDate 2024
url http://eprints.uthm.edu.my/10878/1/J17359_8f763550a50f2f98c7d303af8a15fb6f.pdf
http://eprints.uthm.edu.my/10878/
https://doi.org/10.3390/coatings14010073
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score 13.211869