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JOURNALS // Nanosystems: Physics, Chemistry, Mathematics // Archive

Nanosystems: Physics, Chemistry, Mathematics, 2016 Volume 7, Issue 4, Pages 695–698 (Mi nano268)

Visible light degradation of textile effluent using nanostructured TiO$_2$ photocatalysts

Navaratnasamy Karthikeyana, Vengidusamy Narayananb, Arumainathan Stephenc

a Department of Nuclear Physics, University of Madras, Guindy Campus, Chennai, India
b Department of Physics, The Open University of Sri Lanka, Nawala, Nugegoda, Sri Lanka
c Department of Inorganic Chemistry, University of Madras

Abstract: TiO$_2$, Ag and CuO nanomaterials, and nanostructured TiO$_2$/Ag/CuO photocatalytic materials coupled in different weight percentages were synthesized. The prepared materials were characterized by XRD, SEM, EDX and UV-Vis diffuse reflectance spectroscopy. Photocatalytic degrading capabilities of the pure, as well as the nanostructured TiO$_2$/Ag/CuO photocatalytic materials were tested on the dye effluent collected from the textile industries. The samples collected during the photocatalytic degradation of textile dye effluent were studied with UV-Vis spectroscopy. The nanostructured TiO$_2$Ag/CuO photocatalyst with the composition of 80:10:10 weight percentage exhibited remarkable performance. Coupling of Ag metal nanoparticles and narrow bandgap CuO semiconductor nanomaterial to the wide bandgap TiO$_2$ semiconductor nanomaterial was found to modify the operative bandgap of the system and generate electron-hole pairs under visible light irradiation. The coupled TiO$_2$/Ag/CuO system facilitates improved electron transfer to the adsorbed molecules, and thus the system improves the photocatalytic degradation of dyes by enhanced redox mechanism.

Keywords: Coupled TiO$_2$/Ag/CuO, Nanostructured photocatalysts, bandgap, degradation of textile effluents, advanced oxidation process.

PACS: 62.23.St, 42.70.Qs, 87.85.Rs

Received: 05.02.2016
Revised: 18.04.2016

Language: English

DOI: 10.17586/2220-8054-2016-7-4-695-698



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