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- W1966201814 abstract "Nano-technology is a super microscopic technology to deal with structures of 100 nm or smaller. This technology also involves the developing of <TEX>$TiO_2$</TEX> materials or <TEX>$TiO_2$</TEX> devices within that size. The aim of the present paper is to synthesize <TEX>$WO_x$</TEX> doped nano-<TEX>$TiO_2$</TEX> by the Sonochemistry method and to evaluate the effect of different percentages (0.5-5 wt%) of tungsten oxide load on <TEX>$TiO_2$</TEX> in methylene blue (MB) elimination. The samples were characterized using such different techniques as X-ray diffraction (XRD), TEM, SEM, and UV-VIS absorption spectra. The photo-catalytic activity of tungsten oxide doped <TEX>$TiO_2$</TEX> was evaluated through the elimination of methylene blue using UV-irradiation (315-400nm). The best result was found with 5 wt% <TEX>$WO_x$</TEX> doped <TEX>$TiO_2$</TEX>. It has been confirmed that <TEX>$WO_x-TiO_2$</TEX> could be excited by visible light (E<3.2 eV) and that the recombination rate of electrons/holes in <TEX>$WO_x-TiO_2$</TEX> declined due to the existence of <TEX>$WO_x$</TEX> doped in <TEX>$TiO_2$</TEX>." @default.
- W1966201814 created "2016-06-24" @default.
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- W1966201814 date "2011-02-27" @default.
- W1966201814 modified "2023-10-17" @default.
- W1966201814 title "WOxDoped TiO2Photocatalyst Nano Powder Produced by Sonochemistry Method" @default.
- W1966201814 cites W1975116725 @default.
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- W1966201814 doi "https://doi.org/10.3740/mrsk.2011.21.2.83" @default.
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