Finding a facile and practical method to produce black TiO remains a challenge. Bismuth-vanadium co-doped black TiO (BVBT) was synthesized as a visible light driven photocatalyst by a simple one-pot hydrothermal method. The synthesized BVBT was characterized using scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray powder diffraction (XRD), UV-vis diffuse reflectance spectroscopy (UV-Vis DRS). The light absorption of the synthesized Bi-V co-coped black TiO nanoparticles was significantly improved in the visible and infrared regions. The XRD patterns indicated that the black TiO contained mixed phases of brookite, anatase, and rutile of TiO. This was further confirmed by Raman spectroscopy. The photocatalytic activity of the sample was evaluated by reduction of hexavalent chromium (Cr(VI)) under visible light irradiation. Among investigated hole (h) scavengers, ethylenediaminetetraacetic acid (EDTA) led to the highest reduction of Cr(VI) with a molar ratio of 1:5 (EDTA:Cr(VI)). The results indicated that the Bi-V co-coped black TiO nanocomposite can reduce 94% of 1 mg/L of Cr(VI) within 20 min irradiation time (pH 3 and catalyst dose of 1 g/L). Introducing a simple method to synthesize black TiO which has absorption in the visible and infrared region can open up new applications.
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http://dx.doi.org/10.1007/s11356-020-11330-w | DOI Listing |
Environ Res
December 2024
Center for Water Research, Advanced Institute of Natural Sciences, Beijing Normal University, Zhuhai, 519087, China; Department of Civil and Environmental Engineering, National University of Singapore, 1 Engineering Drive 2, 117576, Singapore. Electronic address:
The heterogeneous catalysis of the composite membrane not only exerts the synergistic effect of different materials but also enable the recyclable use of catalysts, making it an ideal and sustainable strategy for removing pollutants in water. In this study, a novel black phosphorus/graphene/titanium dioxide (BP/GR/TiO) membrane was successfully prepared through the sol-gel method. The composite membrane not only overcame the instability of black phosphorus and the rapid recombination of e/h pairs in titanium dioxide but also synergized with GR to produce a new reactive oxygen species (ROS), singlet oxygen (O), with a longer lifetime and migration distance.
View Article and Find Full Text PDFUnderstanding the biokinetics of nanoparticles will support the identification of target organs for toxicological endpoints. We investigated the biokinetics of poorly soluble nanomaterials carbon black, multi-walled carbon nanotubes (MWCNT), cerium oxide (CeO), titanium dioxide (TiO), crystalline silica (SiO) in inhalation studies in rodents (the soluble amorphous silica was also included). By reviewing research papers on the inhalation of these substances, we collected physico-chemical data and elemental distribution to organs, urine, and feces.
View Article and Find Full Text PDFACS Nano
December 2024
Department of Chemistry, University of California, Riverside, California 92521, United States.
Light-printable rewritable paper that can be used multiple times has attracted extensive attention because of its potential benefits in reducing environmental pollution and energy consumption. Developing rewritable paper with high black-to-colorless contrast, lasting legibility, and a fast response is fascinating but challenging. Here, we integrate the redox chemistry of Cu ions into photoreductive TiO nanoparticles to produce Cu-doped TiO nanoparticles capable of highly photoreversible switching between colorless and black with excellent contrast and color stability.
View Article and Find Full Text PDFMaterials (Basel)
October 2024
Laboratoire de Photovoltaïque, Centre de Recherches et des Technologies de l'Energie, Technopole de Borj Cédria, BP 95, Hammam-Lif 2050, Tunisia.
This study presents a comparative analysis of anodization and hydrothermal techniques for synthesizing TiO nanotubes directly on titanium foil. It emphasizes its advantages as a substrate due to its superior conductivity and efficient charge transfer. Optimized synthesis conditions enable a thorough evaluation of the resulting nanotubes' morphology, structure, and optical properties, ultimately assessing their photoelectrochemical and photocatalytic performances.
View Article and Find Full Text PDFChem Rev
November 2024
School of Computer, Data and Mathematical Sciences, Western Sydney University, Penrith, New South Wales 2752, Australia.
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