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The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs

The main goal of the study was the hydrothermal-assisted synthesis of TiO(2)-ZnO systems and their subsequent use in photoactive processes. Additionally, an important objective was to propose a method for synthesizing TiO(2)-ZnO systems enabling the control of crystallinity and morphology through ep...

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Autores principales: Kubiak, Adam, Żółtowska, Sonia, Bartkowiak, Aleksandra, Gabała, Elżbieta, Sacharczuk, Natalia, Zalas, Maciej, Siwińska-Ciesielczyk, Katarzyna, Jesionowski, Teofil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538394/
https://www.ncbi.nlm.nih.gov/pubmed/34683655
http://dx.doi.org/10.3390/ma14206063
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author Kubiak, Adam
Żółtowska, Sonia
Bartkowiak, Aleksandra
Gabała, Elżbieta
Sacharczuk, Natalia
Zalas, Maciej
Siwińska-Ciesielczyk, Katarzyna
Jesionowski, Teofil
author_facet Kubiak, Adam
Żółtowska, Sonia
Bartkowiak, Aleksandra
Gabała, Elżbieta
Sacharczuk, Natalia
Zalas, Maciej
Siwińska-Ciesielczyk, Katarzyna
Jesionowski, Teofil
author_sort Kubiak, Adam
collection PubMed
description The main goal of the study was the hydrothermal-assisted synthesis of TiO(2)-ZnO systems and their subsequent use in photoactive processes. Additionally, an important objective was to propose a method for synthesizing TiO(2)-ZnO systems enabling the control of crystallinity and morphology through epitaxial growth of ZnO nanowires. Based on the results of X-ray diffraction analysis, in the case of materials containing a small addition of ZnO (≥5 wt.%), no crystalline phase of wurtzite was observed, proving that a high amount of modified titanium dioxide can inhibit the crystallization of ZnO. The transmission electron microscopy (TEM) results confirmed the formation of ZnO nanowires for systems containing ≥ 5% ZnO. Moreover, for the synthesized systems, there were no significant changes in the band gap energy. One of the primary purposes of this study was to test the TiO(2)-ZnO system in the photodegradation process of 4-chlorophenol using low-power UV-LED lamps. The results of photo-oxidation studies showed that the obtained binary systems exhibit good photodegradation and mineralization efficiency. Additionally, it was also pointed out that the dye-sensitized solar cells can be a second application for the synthesized TiO(2)-ZnO binary systems.
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spelling pubmed-85383942021-10-24 The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs Kubiak, Adam Żółtowska, Sonia Bartkowiak, Aleksandra Gabała, Elżbieta Sacharczuk, Natalia Zalas, Maciej Siwińska-Ciesielczyk, Katarzyna Jesionowski, Teofil Materials (Basel) Article The main goal of the study was the hydrothermal-assisted synthesis of TiO(2)-ZnO systems and their subsequent use in photoactive processes. Additionally, an important objective was to propose a method for synthesizing TiO(2)-ZnO systems enabling the control of crystallinity and morphology through epitaxial growth of ZnO nanowires. Based on the results of X-ray diffraction analysis, in the case of materials containing a small addition of ZnO (≥5 wt.%), no crystalline phase of wurtzite was observed, proving that a high amount of modified titanium dioxide can inhibit the crystallization of ZnO. The transmission electron microscopy (TEM) results confirmed the formation of ZnO nanowires for systems containing ≥ 5% ZnO. Moreover, for the synthesized systems, there were no significant changes in the band gap energy. One of the primary purposes of this study was to test the TiO(2)-ZnO system in the photodegradation process of 4-chlorophenol using low-power UV-LED lamps. The results of photo-oxidation studies showed that the obtained binary systems exhibit good photodegradation and mineralization efficiency. Additionally, it was also pointed out that the dye-sensitized solar cells can be a second application for the synthesized TiO(2)-ZnO binary systems. MDPI 2021-10-14 /pmc/articles/PMC8538394/ /pubmed/34683655 http://dx.doi.org/10.3390/ma14206063 Text en © 2021 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
Kubiak, Adam
Żółtowska, Sonia
Bartkowiak, Aleksandra
Gabała, Elżbieta
Sacharczuk, Natalia
Zalas, Maciej
Siwińska-Ciesielczyk, Katarzyna
Jesionowski, Teofil
The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title_full The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title_fullStr The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title_full_unstemmed The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title_short The TiO(2)-ZnO Systems with Multifunctional Applications in Photoactive Processes—Efficient Photocatalyst under UV-LED Light and Electrode Materials in DSSCs
title_sort tio(2)-zno systems with multifunctional applications in photoactive processes—efficient photocatalyst under uv-led light and electrode materials in dsscs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538394/
https://www.ncbi.nlm.nih.gov/pubmed/34683655
http://dx.doi.org/10.3390/ma14206063
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