"Sol-gel synthesis of Sn/Cu co-doped TiO₂ printed films with calcination-tuned interfaces for visible-light degradation of dye and chlorophenol"

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1. Verfasser: Soleimani-Gorgani, Atasheh
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Soleimani-Gorgani, Atasheh
author_facet Soleimani-Gorgani, Atasheh
contents <p><span class="p">This dataset contains the experimental data supporting the manuscript:</span><span class="p">“Sol-gel synthesis of Sn/Cu co-doped TiO₂ printed films with calcination-tuned interfaces for visible-light degradation of dye and chlorophenol”</span><br><span class="p">Files included:</span><br><span class="p">- Dataset-6 sheets.xlsx: measurements collected during experiments</span><span class="p"> Sheet 1: XRD-Figure 2</span><span class="p"> Sheet 2: PL- Figure 3</span><span class="p"> Sheet 3: Raman- Figure 4</span><span class="p"> Sheet 4: Photocatalytic degradation curves- Figure 7</span><span class="p"> Sheet 5: Photocatalytic degradation of chlorophenol-Figure 8</span><span class="p"> Sheet 6 : Intermediate by-products detected – Figure 9</span><br><span class="p">- Figure <span class="link">1.tif</span> : Chemical structures of: a) Methylene Blue and b) Chlorophenol.</span><br><span class="p">- Figure <span class="link">2.tif</span> : XRD patterns of nanoparticles annealed at different temperatures (a) 400 °C; (b) 500 °C and (c) 600 °C.</span><br><span class="p">- Figure <span class="link">3.tif</span> : Photoluminescence (PL) spectrum of the synthesized nanoparticles annealed at different temperatures.</span><br><span class="p">- Figure <span class="link">4.tif</span> : Raman spectra of nanoparticles annealed at different temperatures.</span><br><span class="p">- Figure <span class="link">5.tif</span> : FESEM images of nanoparticles annealed at different temperatures (a) 400°C; (b) 500°C; (d) 600°C.</span><br><span class="p">- Figure <span class="link">6.tif</span> : EDX Analysis of nanoparticles annealed at different temperatures (a) 400 °C; (b) 500 °C and (c) 600 °C.</span><br><span class="p">- Figure <span class="link">7.tif</span> : Photocatalytic degradation curves of methylene blue: a) without light irradiation, b) under UV light irradiation.</span><br><span class="p">- Figure <span class="link">8.tif</span> : Photocatalytic degradation of chlorophenol using printed layer of Cu/Sn-doped- TiO2 irradiated with visible light.</span><br><span class="p">- Figure <span class="link">9.tif</span> : Intermediate by-products detected at various stages of photocatalytic degradation of chlorophenol under visible light irradiation with one-layer printed Cu/Sn-doped- TiO2 (calcinated at 500 °C) used as a photocatalyst.</span><br><span class="p">-GA.tif: Graphical Abstract</span><br><span class="p">- Tables.pdf: PDF file containing tables</span><span class="p">- table 1: The average crystal size of nanoparticles annealed at different temperatures.</span><span class="p">- table 2: Elemental analysis for Cu/Sn-doped-TiO2 nanoparticles.</span><br><span class="p">The datasets were generated during laboratory experiments and used for the preparation of figures and statistical analysis in the associated manuscript.</span></p>
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id zenodo_https___doi_org_10_5281_zenodo_20074795
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle "Sol-gel synthesis of Sn/Cu co-doped TiO₂ printed films with calcination-tuned interfaces for visible-light degradation of dye and chlorophenol"
Soleimani-Gorgani, Atasheh
<p><span class="p">This dataset contains the experimental data supporting the manuscript:</span><span class="p">“Sol-gel synthesis of Sn/Cu co-doped TiO₂ printed films with calcination-tuned interfaces for visible-light degradation of dye and chlorophenol”</span><br><span class="p">Files included:</span><br><span class="p">- Dataset-6 sheets.xlsx: measurements collected during experiments</span><span class="p"> Sheet 1: XRD-Figure 2</span><span class="p"> Sheet 2: PL- Figure 3</span><span class="p"> Sheet 3: Raman- Figure 4</span><span class="p"> Sheet 4: Photocatalytic degradation curves- Figure 7</span><span class="p"> Sheet 5: Photocatalytic degradation of chlorophenol-Figure 8</span><span class="p"> Sheet 6 : Intermediate by-products detected – Figure 9</span><br><span class="p">- Figure <span class="link">1.tif</span> : Chemical structures of: a) Methylene Blue and b) Chlorophenol.</span><br><span class="p">- Figure <span class="link">2.tif</span> : XRD patterns of nanoparticles annealed at different temperatures (a) 400 °C; (b) 500 °C and (c) 600 °C.</span><br><span class="p">- Figure <span class="link">3.tif</span> : Photoluminescence (PL) spectrum of the synthesized nanoparticles annealed at different temperatures.</span><br><span class="p">- Figure <span class="link">4.tif</span> : Raman spectra of nanoparticles annealed at different temperatures.</span><br><span class="p">- Figure <span class="link">5.tif</span> : FESEM images of nanoparticles annealed at different temperatures (a) 400°C; (b) 500°C; (d) 600°C.</span><br><span class="p">- Figure <span class="link">6.tif</span> : EDX Analysis of nanoparticles annealed at different temperatures (a) 400 °C; (b) 500 °C and (c) 600 °C.</span><br><span class="p">- Figure <span class="link">7.tif</span> : Photocatalytic degradation curves of methylene blue: a) without light irradiation, b) under UV light irradiation.</span><br><span class="p">- Figure <span class="link">8.tif</span> : Photocatalytic degradation of chlorophenol using printed layer of Cu/Sn-doped- TiO2 irradiated with visible light.</span><br><span class="p">- Figure <span class="link">9.tif</span> : Intermediate by-products detected at various stages of photocatalytic degradation of chlorophenol under visible light irradiation with one-layer printed Cu/Sn-doped- TiO2 (calcinated at 500 °C) used as a photocatalyst.</span><br><span class="p">-GA.tif: Graphical Abstract</span><br><span class="p">- Tables.pdf: PDF file containing tables</span><span class="p">- table 1: The average crystal size of nanoparticles annealed at different temperatures.</span><span class="p">- table 2: Elemental analysis for Cu/Sn-doped-TiO2 nanoparticles.</span><br><span class="p">The datasets were generated during laboratory experiments and used for the preparation of figures and statistical analysis in the associated manuscript.</span></p>
title "Sol-gel synthesis of Sn/Cu co-doped TiO₂ printed films with calcination-tuned interfaces for visible-light degradation of dye and chlorophenol"
url https://doi.org/10.5281/zenodo.20074795