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Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material

Undoped and Zn-doped ITO (ITO:Zn) multifunctional thin films were successfully synthesized using the sol–gel and dipping method on three different types of substrates (glass, SiO(2)/glass, and Si). The effect of Zn doping on the optoelectronic, microstructural, and gas-sensing properties of the film...

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Autores principales: Gartner, Mariuca, Anastasescu, Mihai, Calderon-Moreno, Jose Maria, Nicolescu, Madalina, Stroescu, Hermine, Hornoiu, Cristian, Preda, Silviu, Predoana, Luminita, Mitrea, Daiana, Covei, Maria, Maraloiu, Valentin-Adrian, Teodorescu, Valentin Serban, Moldovan, Carmen, Petrik, Peter, Zaharescu, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502597/
https://www.ncbi.nlm.nih.gov/pubmed/36145032
http://dx.doi.org/10.3390/nano12183244
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author Gartner, Mariuca
Anastasescu, Mihai
Calderon-Moreno, Jose Maria
Nicolescu, Madalina
Stroescu, Hermine
Hornoiu, Cristian
Preda, Silviu
Predoana, Luminita
Mitrea, Daiana
Covei, Maria
Maraloiu, Valentin-Adrian
Teodorescu, Valentin Serban
Moldovan, Carmen
Petrik, Peter
Zaharescu, Maria
author_facet Gartner, Mariuca
Anastasescu, Mihai
Calderon-Moreno, Jose Maria
Nicolescu, Madalina
Stroescu, Hermine
Hornoiu, Cristian
Preda, Silviu
Predoana, Luminita
Mitrea, Daiana
Covei, Maria
Maraloiu, Valentin-Adrian
Teodorescu, Valentin Serban
Moldovan, Carmen
Petrik, Peter
Zaharescu, Maria
author_sort Gartner, Mariuca
collection PubMed
description Undoped and Zn-doped ITO (ITO:Zn) multifunctional thin films were successfully synthesized using the sol–gel and dipping method on three different types of substrates (glass, SiO(2)/glass, and Si). The effect of Zn doping on the optoelectronic, microstructural, and gas-sensing properties of the films was investigated using X-ray diffraction (XRD), atomic force microscopy (AFM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), spectroscopic ellipsometry (SE), Raman spectroscopy, Hall effect measurements (HE), and gas testing. The results showed that the optical constants, the transmission, and the carrier numbers were correlated with the substrate type and with the microstructure and the thickness of the films. The Raman study showed the formation of ITO films and the incorporation of Zn in the doped film (ITO:Zn), which was confirmed by EDX analysis. The potential use of the multifunctional sol–gel ITO and ITO:Zn thin films was proven for TCO applications or gas-sensing experiments toward CO(2). The Nyquist plots and equivalent circuit for fitting the experimental data were provided. The best electrical response of the sensor in CO(2) atmosphere was found at 150 °C, with activation energy of around 0.31 eV.
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spelling pubmed-95025972022-09-24 Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material Gartner, Mariuca Anastasescu, Mihai Calderon-Moreno, Jose Maria Nicolescu, Madalina Stroescu, Hermine Hornoiu, Cristian Preda, Silviu Predoana, Luminita Mitrea, Daiana Covei, Maria Maraloiu, Valentin-Adrian Teodorescu, Valentin Serban Moldovan, Carmen Petrik, Peter Zaharescu, Maria Nanomaterials (Basel) Article Undoped and Zn-doped ITO (ITO:Zn) multifunctional thin films were successfully synthesized using the sol–gel and dipping method on three different types of substrates (glass, SiO(2)/glass, and Si). The effect of Zn doping on the optoelectronic, microstructural, and gas-sensing properties of the films was investigated using X-ray diffraction (XRD), atomic force microscopy (AFM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), spectroscopic ellipsometry (SE), Raman spectroscopy, Hall effect measurements (HE), and gas testing. The results showed that the optical constants, the transmission, and the carrier numbers were correlated with the substrate type and with the microstructure and the thickness of the films. The Raman study showed the formation of ITO films and the incorporation of Zn in the doped film (ITO:Zn), which was confirmed by EDX analysis. The potential use of the multifunctional sol–gel ITO and ITO:Zn thin films was proven for TCO applications or gas-sensing experiments toward CO(2). The Nyquist plots and equivalent circuit for fitting the experimental data were provided. The best electrical response of the sensor in CO(2) atmosphere was found at 150 °C, with activation energy of around 0.31 eV. MDPI 2022-09-19 /pmc/articles/PMC9502597/ /pubmed/36145032 http://dx.doi.org/10.3390/nano12183244 Text en © 2022 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
Gartner, Mariuca
Anastasescu, Mihai
Calderon-Moreno, Jose Maria
Nicolescu, Madalina
Stroescu, Hermine
Hornoiu, Cristian
Preda, Silviu
Predoana, Luminita
Mitrea, Daiana
Covei, Maria
Maraloiu, Valentin-Adrian
Teodorescu, Valentin Serban
Moldovan, Carmen
Petrik, Peter
Zaharescu, Maria
Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title_full Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title_fullStr Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title_full_unstemmed Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title_short Multifunctional Zn-Doped ITO Sol–Gel Films Deposited on Different Substrates: Application as CO(2)-Sensing Material
title_sort multifunctional zn-doped ito sol–gel films deposited on different substrates: application as co(2)-sensing material
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502597/
https://www.ncbi.nlm.nih.gov/pubmed/36145032
http://dx.doi.org/10.3390/nano12183244
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