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Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique

TiO(2)–SiO(2) nanocomposite thin films have gained the attention of the scientific community due to their unique physical and chemical properties. In this paper, we report on the fabrication and characterization of a TiO(2)–SiO(2) nanocomposite disk-shaped target. The target was used for the deposit...

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Autores principales: Kadri, Laid, Abderrahmane, Abdelkader, Bulai, Georgiana, Carlescu, Aurelian, Doroftei, Corneliu, Motrescu, Iuliana, Gurlui, Silviu, Leontie, Liviu, Adnane, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222681/
https://www.ncbi.nlm.nih.gov/pubmed/37242048
http://dx.doi.org/10.3390/nano13101632
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author Kadri, Laid
Abderrahmane, Abdelkader
Bulai, Georgiana
Carlescu, Aurelian
Doroftei, Corneliu
Motrescu, Iuliana
Gurlui, Silviu
Leontie, Liviu
Adnane, Mohamed
author_facet Kadri, Laid
Abderrahmane, Abdelkader
Bulai, Georgiana
Carlescu, Aurelian
Doroftei, Corneliu
Motrescu, Iuliana
Gurlui, Silviu
Leontie, Liviu
Adnane, Mohamed
author_sort Kadri, Laid
collection PubMed
description TiO(2)–SiO(2) nanocomposite thin films have gained the attention of the scientific community due to their unique physical and chemical properties. In this paper, we report on the fabrication and characterization of a TiO(2)–SiO(2) nanocomposite disk-shaped target. The target was used for the deposition of TiO(2)–SiO(2) nanocomposite thin films on fluorine-doped tin oxide/glass substrates using the pulsed laser deposition (PLD) technique. The thicknesses of the thin films were fixed to 100 nm, and the deposition temperature ranged from room temperature to 300 °C. As revealed by the microstructural and morphological characterizations revealed, the TiO(2)–SiO(2) nanocomposite thin films are amorphous and display homogeneous distribution. The determined values of the indirect optical band gap range from 2.92 to 3.07 eV, while those of the direct optical band gap lie between 3.50 and 3.55 eV. Additionally, as the deposition temperature decreases, the light transmission increases in the visible and in the ultraviolet ranges, which is suitable for flexible perovskite solar cells. This research can uncover new insights into the fabrication of amorphous TiO(2)–SiO(2)-based nanostructured thin films using the PLD technique for perovskite solar cell technology.
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spelling pubmed-102226812023-05-28 Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique Kadri, Laid Abderrahmane, Abdelkader Bulai, Georgiana Carlescu, Aurelian Doroftei, Corneliu Motrescu, Iuliana Gurlui, Silviu Leontie, Liviu Adnane, Mohamed Nanomaterials (Basel) Article TiO(2)–SiO(2) nanocomposite thin films have gained the attention of the scientific community due to their unique physical and chemical properties. In this paper, we report on the fabrication and characterization of a TiO(2)–SiO(2) nanocomposite disk-shaped target. The target was used for the deposition of TiO(2)–SiO(2) nanocomposite thin films on fluorine-doped tin oxide/glass substrates using the pulsed laser deposition (PLD) technique. The thicknesses of the thin films were fixed to 100 nm, and the deposition temperature ranged from room temperature to 300 °C. As revealed by the microstructural and morphological characterizations revealed, the TiO(2)–SiO(2) nanocomposite thin films are amorphous and display homogeneous distribution. The determined values of the indirect optical band gap range from 2.92 to 3.07 eV, while those of the direct optical band gap lie between 3.50 and 3.55 eV. Additionally, as the deposition temperature decreases, the light transmission increases in the visible and in the ultraviolet ranges, which is suitable for flexible perovskite solar cells. This research can uncover new insights into the fabrication of amorphous TiO(2)–SiO(2)-based nanostructured thin films using the PLD technique for perovskite solar cell technology. MDPI 2023-05-13 /pmc/articles/PMC10222681/ /pubmed/37242048 http://dx.doi.org/10.3390/nano13101632 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kadri, Laid
Abderrahmane, Abdelkader
Bulai, Georgiana
Carlescu, Aurelian
Doroftei, Corneliu
Motrescu, Iuliana
Gurlui, Silviu
Leontie, Liviu
Adnane, Mohamed
Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title_full Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title_fullStr Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title_full_unstemmed Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title_short Optical and Structural Analysis of TiO(2)–SiO(2) Nanocomposite Thin Films Fabricated via Pulsed Laser Deposition Technique
title_sort optical and structural analysis of tio(2)–sio(2) nanocomposite thin films fabricated via pulsed laser deposition technique
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222681/
https://www.ncbi.nlm.nih.gov/pubmed/37242048
http://dx.doi.org/10.3390/nano13101632
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