4.6 Article

Highly active non-metals doped mixed-phase TiO2 for photocatalytic oxidation of ibuprofen under visible light

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.jphotochem.2017.07.004

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Non-metal doping; Anatase/brookite TiO2; Photodegradation; Ibuprofen; Visible light

资金

  1. Science and Technological Development Fund (STDF), Academy of Scientific Research and Technology (ASRT), Cairo, Egypt [ID 3727]

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Visible light-activated C, N, S-tri-doped mesoporous anatase-brookite heterojunction TiO2 photocatalyst has been synthesized by a facile hydrothermal method. The XRD and Raman spectra data revealed the formation of mixed anatase and brookite phases. The FE-SEM and TEM images demonstrated the formation of brookite phase with a rod-like structure composed of much smaller particles of anatase phase. N-2 isotherm measurements exhibited that both doped and undoped TiO2 have mesoporous structure and their surface area measurements were reduced from 62 to 30 cm(2)g(-1) after non-metals doping. The photocatalytic oxidation of the ibuprofen (IBF) has been evaluated using prepared photocatalysts under visible light. The photocatalytic activity of the mesoporous C, N and S co-doped TiO2 photocatalyst dramatically increased, achieving complete IBF degradation with an initial 1st order rate 1.779 mu M min(-1) for 5 h. The photonic efficiency (xi) of IBF degradation under visible light with ABH (undoped) and DABH (doped) photocatalysts are 0.044% and 1.84%, respectively. The reaction rate of doped photocatalyst is greater 40 times than non-doped one. The results demonstrated the advantages of the synthetic approach and the great potential of the driven visible light C, N and S co-doped TiO2 photocatalysts for the treatment of residual pharmaceuticals in contaminated water under visible light. C) 2017 Elsevier B.V. All rights reserved.

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