Growth and characterization of nanostructured Ag-ZnO for application in water purification

被引:0
|
作者
Barnasas A. [1 ,2 ]
Karavasilis M.V. [3 ,4 ]
Aggelopoulos C. [3 ]
Tsakiroglou C.D. [3 ]
Poulopoulos P. [1 ,2 ]
机构
[1] Laboratory of High-Tech Materials, University of Patras, Patras
[2] Materials Science Department, University of Patras, Patras
[3] Foundation for Research and Technology Hellas-Institute of Chemical Engineering Sciences (FORTH/ICE-HT), Patras
[4] Department of Chemistry, University of Patras, Patras
关键词
Methylene blue; Nanostructured materials; Photocatalysis; Silver deposition; Sputtering; Thermal oxidation process; Water purification; Zinc oxide;
D O I
10.4028/www.scientific.net/jnanor.62.75
中图分类号
学科分类号
摘要
In this work, a low-cost method to produce ZnO nanostructured materials for the treatment of water polluted with model organic pollutants (e.g. dyes) is presented. Zinc and silvercoated Zn (Ag/Zn) films, fabricated via sputtering method were naturally oxidized via a simple, low-temperature, scalable thermal process. During oxidation, Ag/ZnO nanorods were grown on Zn foils after treating their surface with various agents (e.g. acids) and annealing in an oven at temperatures 385-400 °C. The ZnO and Ag/ZnO films on Zn were characterized by X-ray diffraction, scanning electron microscopy and photoluminescence spectroscopy. The cationic dye methylene blue (MB) was selected as model pollutant dissolved in water. A batch photo-reactor was fabricated and used to to study the adsorption capacity and photocatalytic performance of films. The transient varation of MB concentration in aqueous solutions was measured with ultraviolet-visible (UV-Vis.) spectroscopy. Ag/ZnO demonstrated a strong MB adsorbion capacity in dark conditions, and a satisfactory MB photocatalytic degradation under UV light irradiation.The optimized doping of Ag in Ag/ZnO film enhanced its photocatalytic activity, and seems well-promising for the potential scale-up of Ag/ZnO films, and use in large-scale systems for water purification under UV light irradiation. © 2020 Trans Tech Publications Ltd, Switzerland.
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页码:75 / 86
页数:11
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