| Literature DB >> 25852351 |
Mohammad Qamar1, Qasem Drmosh1, Muhammad I Ahmed1, Muhammad Qamaruddin1, Zain H Yamani1.
Abstract
Development of nanostructured photocatalysts for harnessing solar energy in energy-efficient and environmentally benign way remains an important area of research. Pure and WO3-surface modified thin films of TiO2 were prepared by magnetron sputtering on indium tin oxide glass, and photoelectrochemical and photocatalytic activities of these films were studied. TiO2 particles were <50 nm, while deposited WO3 particles were <20 nm in size. An enhancement in the photocurrent was observed when the TiO2 surface was modified WO3 nanoparticles. Effect of potential, WO3 amount, and radiations of different wavelengths on the photoelectrochemical activity of TiO2 electrodes was investigated. Photocatalytic activity of TiO2 and WO3-modified TiO2 for the decolorization of methyl orange was tested. Graphical abstractWO3-surface modified TiO2 film showing better photocatalytic and photoelectrocatalytic activity.Entities:
Keywords: Photocatalysis; Photoelectrochemistry; Sputtering; WO3/TiO2 thin film
Year: 2015 PMID: 25852351 PMCID: PMC4385024 DOI: 10.1186/s11671-015-0745-2
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1FESEM images, EDS spectrum, and absorption spectra of TiO and WO /TiO bilayer films. Field emission scanning electron microscopic image of (A) TiO2 film and (B) WO3/TiO2 bilayer film (deposition time = 5 min), (C) EDS spectrum of WO3/TiO2 bilayer film, and (D) absorption spectra of TiO2 and WO3/TiO2 films (deposition time = 5 min).
Figure 2Potentiodynamic behavior of TiO with respect to the thickness of WO layers.
Figure 3Action spectra of photocurrent in presence of TiO and WO /TiO (deposition time = 5 min) thin film electrodes.
Figure 4Voltammograms under intermittent illumination/darkness of TiO and WO /TiO thin films (deposition time = 5 min).
Figure 5Change in concentration of methyl orange aqueous solution with TiO /UV, WO /TIO /UV (deposition time = 5 min), UV, and visible light.
Figure 6Schematic showing (A) the interfacial charge transfer between WO and TiO and (B) the direction of UV light.