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2000
Volume 14, Issue 6
  • ISSN: 1573-4137
  • E-ISSN: 1875-6786

Abstract

Background: Photocatalytic materials can be prepared in the supported form in wastewater treating devices. The quartz sphere can be regarded as a suitable support for photocatalytic material since it is transparent to UV irradiation. Methods: GdTiO was supported on quartz spheres by a sol-gel method in this work to study the effects of calcination temperature on the properties of the composite 30%GdTiO/SiO2. The materials were characterized using scanning electron microscopy, transmission electron microscopy, Xray powder diffraction, FT-IR/Far IR spectroscopy, UV-Vis spectrometry, fluorescence spectrophotometry, and surface area and pore analyses. Results: Crystallization of pyrochlore structured GdTiO starts at 800oC. The FT-IR absorptions of GdTiO occur in the spectra of the samples calcined over 800oC. Band gap energy of the 30%GdTiO/SiO2 decreases from 3.66 eV at 600oC to 3.43 eV at 1000oC. The sample calcined at 800oC has the maximum photocatalytic degradation efficiency of 59.5% after 30 min of irradiation. Conclusion: The increase of calcination temperature leads to a slight cell expansion of pyrochlore structured GdTiO crystals that forms above 800oC. The increase in calcination temperature leads to constant reducing band gap energy of 30%GdTiO/SiO2. The maximum amount of hydroxyl radical is produced in the solution containing 30%GdTiO/SiO2 calcined at 800oC, accompanied with the maximum ofloxacin degradation efficiency on that sample.

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/content/journals/cnano/10.2174/1573413714666180418163024
2018-12-01
2025-09-15
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  • Article Type:
    Research Article
Keyword(s): degradation; Gd2Ti2O7; ofloxacin; Photocatalytic; SiO2; support
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