4.5 Article

The optical and photo-electrochemical characterization of nano-ZnO particles and its application to degradation of Reactive Blue 19 under solar light

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OPTIK
卷 238, 期 -, 页码 -

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ELSEVIER GMBH
DOI: 10.1016/j.ijleo.2021.166751

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ZnO nanopowder; Chemical synthesis; Optical band gap; Semiconductor; Reactive Blue 19; Photodegradation; Solar light

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  1. Faculty of Mechanical Engineering and Process Engineering (Algiers)
  2. Faculty of Chemistry (Algiers)

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ZnO nano powder with crystallite sizes in the range of 18-29 nm was synthesized by one-step calcinations from nitrate and acetate precursors. Among the two precursors, ZnO-Ac showed the best photocatalytic activity due to its large active surface area, successfully degrading the hazardous dye RB 19 under solar light.
To assess its photocatalytic activity under sunlight, ZnO nano powder with crystallites sizes in the range (18-29 nm) was synthesized by decomposition from nitrate (ZnO-Nit) and acetate (ZnO-Ac) precursors by one-step calcinations. The powders were characterized by X-ray diffraction, transmission electron microscopy and Fourier-transform infrared spectroscopy. The optical band gap of ZnO-Ac, determined from the diffuse reflectance, was found to be 3.23 eV and the transition is directly allowed, due to the charge transfer O2-: 2p -> Zn2+: 4s. The capacitance-potential (C-2 - E) characteristic plotted at pH similar to 7 shows n type behaviour with a conductionband (-0.42 V-SCE), made up of Zn2+: 4s orbital and positive of the O-2/O-2(center dot) level and a valence band (2.81 V-SCE) deriving mostly from O2-: 2p orbital whose potential is less anodic than the (OH)-O-center dot/H2O level. So, ZnO was successfully used for the degradation of the Reactive Blue 19 (RB 19) a hazardous dye, by both radicals O-2(center dot-) and (OH)-O-center dot under solar light. Indeed, RB 19 is a vinylsulphone dye, difficult to eliminate by chemical oxidation because its anthraquinone structure is highly stabilized by resonance. The best photoactivity occurs over ZnO-Ac owing to its large active surface area (59 m(2) g(-1)). The oxidation obeys a zero order kinetic with a rate constant of 7.3 x 10(-3) mol L-1 min(-1). The elaborated material showed an outstanding recyclability.

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