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Fizika i Tekhnika Poluprovodnikov, 2021, Volume 55, Issue 6, Page 533 (Mi phts6612)  

This article is cited in 4 scientific papers (total in 4 papers)

Semiconductor physics

Comparison of thin films of titanium dioxide deposited by sputtering and sol-gel methods for waveguiding applications

M. Brellaa, A. Taabouchebc, B. Gharbiac, R. Gheriania, Y. Bouachibad, A. Bouabelloub, H. Serrare, S. Touild, K. Laggounee, M. Boudissaf

a Laboratoire de Rayonnement et Plasmas et Physique des Surfaces (LRPPS), Université Kasdi Merbah, Ouargla 30000, Algeria
b Thin Films and Interfaces Laboratory, University of Frères Mentouri Constantine, Constantine 25000, Algeria
c Faculty of Hydrocarbons and Renewable Energies and Earth and Universe Sciences, University Kasdi Merbah
d Mechanics and advanced materials laboratory, National Polytechnic School of Constantine Malek BENNABI, BP 75A RP Ali Mendjeli – Constantine, Algeria
e Research Center in Industrial Technologies (CRTI), BP 64 Cheraga (Alger), Algeria
f ENMC Laboratory, Department of Physics, Faculty of Sciences, University Ferhat Abbas, Setif 19000, Algeria
Full-text PDF (35 kB) Citations (4)
Abstract: In this work, TiO$_2$ thin films were deposited onto glass substrate by two different techniques: sol-gel dip-coating (SG) and reactive DC magnetron sputtering (Sput). The prepared samples have been characterized by means of micro-Raman, differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) measurements, scanning electron microscopy (SEM), UV-Visible spectrophotometry, and M-Lines spectroscopy (MLS). The micro-Raman results showed an amorphous TiO$_2$-SG phase and the vibrational mode of TiO$_2$-Sput is anatase phase. DSC-TGA analysis was used to investigate the thermal properties of the TiO$_2$ material. SEM spectroscopy has shown that TiO$_2$-SG has a disordered and more porous surface, TiO$_2$-Sput sample is homogeneous and shows uniform distribution of densely packed well-defined grains. The obtained films have an optical transmittance varying from 60 to 88% in the visible region. The optical band gaps deduced from the transmittance are 3.48 and 3.53 eV for TiO$_2$-SG and TiO$_2$-Sput, respectively. The optical waveguiding measurements carried out on TiO$_2$-SG and TiO$_2$-Sput films show single guided modes behavior (TE$_0$ and TM$_0$). These measurements have allowed deducing the refractive index and thickness values that are 2.06 at 216 nm for TiO$_2$-SG and 2.26 at 204 nm for TiO$_2$-Sput thin films. The analysis of waveguiding properties indicates that amorphous TiO$_2$ may prove to be more efficient in photonic device as compared to crystalline TiO$_2$.
Keywords: TiO$_2$, thin films, sol-gel, sputtering, anatase, waveguiding.
Funding agency Grant number
Projets de Recherche Formation-Universitaire BOOL02UN250120200007
BOOL02UN3001120190006
This work is supported by Formation-University Research Project (PRFU) of Algerian ministry of high education and scientific research (nos. BOOL02UN250120200007 and BOOL02UN3001120190006).
Received: 11.11.2020
Revised: 11.11.2020
Accepted: 20.01.2021
English version:
Semiconductors, 2022, Volume 56, Issue 3, Pages 234–239
DOI: https://doi.org/10.1134/S106378262106004X
Document Type: Article
Language: English
Citation: M. Brella, A. Taabouche, B. Gharbi, R. Gheriani, Y. Bouachiba, A. Bouabellou, H. Serrar, S. Touil, K. Laggoune, M. Boudissa, “Comparison of thin films of titanium dioxide deposited by sputtering and sol-gel methods for waveguiding applications”, Fizika i Tekhnika Poluprovodnikov, 55:6 (2021), 533; Semiconductors, 56:3 (2022), 234–239
Citation in format AMSBIB
\Bibitem{BreTaaGha21}
\by M.~Brella, A.~Taabouche, B.~Gharbi, R.~Gheriani, Y.~Bouachiba, A.~Bouabellou, H.~Serrar, S.~Touil, K.~Laggoune, M.~Boudissa
\paper Comparison of thin films of titanium dioxide deposited by sputtering and sol-gel methods for waveguiding applications
\jour Fizika i Tekhnika Poluprovodnikov
\yr 2021
\vol 55
\issue 6
\pages 533
\mathnet{http://mi.mathnet.ru/phts6612}
\transl
\jour Semiconductors
\yr 2022
\vol 56
\issue 3
\pages 234--239
\crossref{https://doi.org/10.1134/S106378262106004X}
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  • This publication is cited in the following 4 articles:
    Citing articles in Google Scholar: Russian citations, English citations
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    Fizika i Tekhnika Poluprovodnikov Fizika i Tekhnika Poluprovodnikov
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