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Catalytic Scavenging of Plant Reactive Oxygen Species In Vivo by Anionic Cerium Oxide Nanoparticles
Published on: August 26, 2018
Eclipta prostrata leaf extract derived carbon dots integrated TiO2 nanocomposites using for enhanced 4-nitrophenol
1Department of Biology, Faculty of Science, University of Tabuk, 71491, Tabuk, Saudi Arabia. raffan@ut.edu.sa.
Abstract:
Water contamination by organic pollutants and microbes causes serious environmental problem and risks the life of living things. 4-Nitrophenol is a major constituent of several industrial effluents can damage the health of human. This study presents the development of a titanium dioxide (TiO₂) nanoparticles integrated with carbon dots (CDs) of Eclipta prostrata leaf extract designed for the catalytic reduction of 4-nitrophenol in water and antibacterial applications. CDs/TiO2 nanocomposites were synthesized via a green, hydrothermal method. The structural and morphological analysis were performed by X-ray diffraction and microscopic analysis. The optical properties and stability of CDs/TiO2 nanocomposites was studied using UV-visible and zeta potential measurements. The CDs/TiO₂ nanocomposite exhibited concentration-dependent antioxidant activity, results 90-95% radical scavenging efficiency, compared with the performance of ascorbic acid at 125 µg/mL in both 2,2-diphenyl-1-picrylhydrazyl (DPPH) and ferric reducing antioxidant power assays. Antibacterial studies showed strong activity against Staphylococcus aureus and Klebsiella pneumoniae, with zone of inhibition of 18.4 mm and 19.3 mm, respectively, at 50 µg/mL. The catalytic activity of CDs/TiO2 nanoparticles were tested through the reduction of 4-nitrophenol (4-NP) into 4-aminophenol through hydrogenation. CDs/TiO2 nanocomposites possess excellent catalytic activity in the reduction of nitrophenol, achieving near-complete conversion within 20 min with a rate of 0.168 min-1 follows pseudo first order kinetic reaction. These findings suggest the enhanced catalytic and antibacterial property of CDs/TiO2 nanocomposites can be potentially employed for the remediation of 4-NP and microbial contaminated water.
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