Publication | Open Access
Synergistic Effect of Fluorinated and N Doped TiO2 Nanoparticles Leading to Different Microstructure and Enhanced Photocatalytic Bacterial Inactivation
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Citations
51
References
2017
Year
Visible LightEngineeringInorganic PhotochemistryNanocatalysisPhoto-electrochemical CellChemistryElectronic PropertiesBand GapChemical EngineeringGreen NanotechnologyMaterials FabricationPhotocatalysisDifferent MicrostructureMaterials SciencePhotochemistryNanotechnologyNanomanufacturingSynergistic EffectNanomaterialsTitanium Dioxide Materials
This work focuses on the development of a facile and scalable wet milling method followed by heat treatment to prepare fluorinated and/or N-doped TiO₂ nanopowders with improved photocatalytic properties under visible light. The structural and electronic properties of doped particles were investigated by various techniques. The successful doping of TiO₂ was confirmed by X-ray photoelectron spectroscopy (XPS), and the atoms appeared to be mainly located in interstitial positions for N whereas the fluorination is located at the TiO₂ surface. The formation of intragap states was found to be responsible for the band gap narrowing leading to the faster bacterial inactivation dynamics observed for the fluorinated and N doped TiO₂ particles compared to N-doped TiO₂. This was attributed to a synergistic effect. The results presented in this study confirmed the suitability of the preparation approach for the large-scale production of cost-efficient doped TiO₂ for effective bacterial inactivation.
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