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Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers

This paper deals with the study of the optical properties of one-dimensional SrTiO(3)/PAN-based photocatalysts with the addition of metal oxide particles and the determination of their bandgaps. One-dimensional photocatalysts were obtained by the electrospinning method. Particles of metals such as i...

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Autores principales: Sultanov, Fail, Daulbayev, Chingis, Azat, Seitkhan, Kuterbekov, Kairat, Bekmyrza, Kenzhebatyr, Bakbolat, Baglan, Bigaj, Magdalena, Mansurov, Zulkhair
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7559362/
https://www.ncbi.nlm.nih.gov/pubmed/32882871
http://dx.doi.org/10.3390/nano10091734
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author Sultanov, Fail
Daulbayev, Chingis
Azat, Seitkhan
Kuterbekov, Kairat
Bekmyrza, Kenzhebatyr
Bakbolat, Baglan
Bigaj, Magdalena
Mansurov, Zulkhair
author_facet Sultanov, Fail
Daulbayev, Chingis
Azat, Seitkhan
Kuterbekov, Kairat
Bekmyrza, Kenzhebatyr
Bakbolat, Baglan
Bigaj, Magdalena
Mansurov, Zulkhair
author_sort Sultanov, Fail
collection PubMed
description This paper deals with the study of the optical properties of one-dimensional SrTiO(3)/PAN-based photocatalysts with the addition of metal oxide particles and the determination of their bandgaps. One-dimensional photocatalysts were obtained by the electrospinning method. Particles of metals such as iron, chromium, and copper were used as additives that are capable of improving the fibers’ photocatalytic properties based on SrTiO(3)/PAN. The optimal ratios of the solutions for the electrospinning of fibers based on SrTiO(3)/PAN with the addition of metal oxide particles were determined. The transmission and reflection of composite photocatalysts with metal oxide particles were measured in a wide range of spectra, from the ultraviolet region (185 nm) to near-infrared radiation (3600 nm), to determine the values of their bandgaps. Thus, the introduction of metal oxide particles resulted in a decrease in the bandgaps of the obtained composite photocatalysts compared to the initial SrTiO(3)/PAN (3.57 eV), with the following values: −3.11 eV for SrTiO(3)/PAN/Fe(2)O(3), −2.84 eV for SrTiO(3)/PAN/CuO, and −2.89 eV for SrTiO(3)/PAN/Cr(2)O(3). The obtained composite photocatalysts were tested for the production of hydrogen by the splitting of water–methanol mixtures under UV irradiation, and the following rates of hydrogen evolution were determined: 344.67 µmol h(−1) g(−1) for SrTiO(3)/PAN/Fe(2)O(3), 398.93 µmol h(−1) g(−1) for SrTiO(3)/PAN/Cr(2)O(3), and 420.82 µmol h(−1) g(−1) for SrTiO(3)/PAN/CuO.
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spelling pubmed-75593622020-10-26 Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers Sultanov, Fail Daulbayev, Chingis Azat, Seitkhan Kuterbekov, Kairat Bekmyrza, Kenzhebatyr Bakbolat, Baglan Bigaj, Magdalena Mansurov, Zulkhair Nanomaterials (Basel) Article This paper deals with the study of the optical properties of one-dimensional SrTiO(3)/PAN-based photocatalysts with the addition of metal oxide particles and the determination of their bandgaps. One-dimensional photocatalysts were obtained by the electrospinning method. Particles of metals such as iron, chromium, and copper were used as additives that are capable of improving the fibers’ photocatalytic properties based on SrTiO(3)/PAN. The optimal ratios of the solutions for the electrospinning of fibers based on SrTiO(3)/PAN with the addition of metal oxide particles were determined. The transmission and reflection of composite photocatalysts with metal oxide particles were measured in a wide range of spectra, from the ultraviolet region (185 nm) to near-infrared radiation (3600 nm), to determine the values of their bandgaps. Thus, the introduction of metal oxide particles resulted in a decrease in the bandgaps of the obtained composite photocatalysts compared to the initial SrTiO(3)/PAN (3.57 eV), with the following values: −3.11 eV for SrTiO(3)/PAN/Fe(2)O(3), −2.84 eV for SrTiO(3)/PAN/CuO, and −2.89 eV for SrTiO(3)/PAN/Cr(2)O(3). The obtained composite photocatalysts were tested for the production of hydrogen by the splitting of water–methanol mixtures under UV irradiation, and the following rates of hydrogen evolution were determined: 344.67 µmol h(−1) g(−1) for SrTiO(3)/PAN/Fe(2)O(3), 398.93 µmol h(−1) g(−1) for SrTiO(3)/PAN/Cr(2)O(3), and 420.82 µmol h(−1) g(−1) for SrTiO(3)/PAN/CuO. MDPI 2020-09-01 /pmc/articles/PMC7559362/ /pubmed/32882871 http://dx.doi.org/10.3390/nano10091734 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sultanov, Fail
Daulbayev, Chingis
Azat, Seitkhan
Kuterbekov, Kairat
Bekmyrza, Kenzhebatyr
Bakbolat, Baglan
Bigaj, Magdalena
Mansurov, Zulkhair
Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title_full Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title_fullStr Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title_full_unstemmed Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title_short Influence of Metal Oxide Particles on Bandgap of 1D Photocatalysts Based on SrTiO(3)/PAN Fibers
title_sort influence of metal oxide particles on bandgap of 1d photocatalysts based on srtio(3)/pan fibers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7559362/
https://www.ncbi.nlm.nih.gov/pubmed/32882871
http://dx.doi.org/10.3390/nano10091734
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