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Combining carbon dots and Ag6Si2O7 nanoparticles with TiO2: Visible-light-driven photocatalysts with efficient performance for removal of pollutants
[Display omitted] •Novel TiO2/Ag6Si2O7/CDs nanocomposites as efficient photocatalysts are reported.•The TiO2/Ag6Si2O7/CDs (0.75 mL) nanocomposite exhibited the highest activity.•The activity was 24.4-folds higher than TiO2 in RhB degradation under visible light.•The nanocomposite displayed substanti...
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Published in: | Separation and purification technology 2020-10, Vol.248, p.116928, Article 116928 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | [Display omitted]
•Novel TiO2/Ag6Si2O7/CDs nanocomposites as efficient photocatalysts are reported.•The TiO2/Ag6Si2O7/CDs (0.75 mL) nanocomposite exhibited the highest activity.•The activity was 24.4-folds higher than TiO2 in RhB degradation under visible light.•The nanocomposite displayed substantial activity in removal of different pollutants.
Fabrication of TiO2-based materials with high photocatalytic ability can be considered as a significant research topic in the field of heterogeneous photocatalysis. Herein, ternary photocatalysts composed of TiO2, Ag6Si2O7, and C-Dots were fabricated through a simple procedure and various techniques were applied to evaluate the photoelectrochemical, optical, textural, structural, and morphological features of the as-obtained photocatalysts. The TiO2/Ag6Si2O7/C-Dots nanocomposite with 0.75 mL of C-Dots indicated greater photoactivity in degradation of fuchsine, rhodamine B, methyl orange, and methylene blue, which was almost 18.1, 24.4, 13.8, and 24.4-times as high as the pristine TiO2 and 3.1, 4.7, 2.8, and 3.6-folds as high as the TiO2/Ag6Si2O7 (20%) nanocomposite, respectively. It was found that formation of n-n heterojunctions among Ag6Si2O7 and TiO2 counterparts and properties of C-Dots lead to prolonged charge lifetime and increased visible-light absorption, leading to impressively improved photocatalytic performance. The quenching tests proved that h+ and •O2− species possess substantial influence on the degradation reactions. In light of the experimental results, the TiO2/Ag6Si2O7/C-Dots nanocomposites can be regarded as highly effective photocatalysts to eliminate toxic contaminants. |
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ISSN: | 1383-5866 1873-3794 |
DOI: | 10.1016/j.seppur.2020.116928 |