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Highly efficient WO3-ZnO mixed oxides for photocatalysis

机译:用于光催化的高效WO3-ZnO混合氧化物

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摘要

Monoclinic nanocuboid WO3 enhanced the photocatalyst efficiency of quasi nanobelt zinc oxide for dye degradation in the presence of visible light radiation. Combustion synthesized ZnO resulted in a belt-like morphology through in situ cluster formation of near spherical particles but homogenously disperses and strongly adheres to nanocuboid WO3 during physical mixing. Cationic methylene blue (MB) and anionic orange G (OG) undergo degradation through a charge transfer mechanism in the presence of WO3-ZnO (1 : 9 weight percentage ratio) mixture. The photocatalytic reaction was enhanced due to the reduction in the recombination of photogenerated electron-holes. The high degree of 90% degradation of both dyes is due to the activity of the mixed oxides, which is much higher than that obtained either with WO3 or ZnO individually.
机译:单斜纳米立方体WO3在可见光辐射的存在下提高了准纳米带氧化锌对染料降解的光催化效率。燃烧合成的ZnO通过原位团簇形成近球形颗粒而形成带状形态,但在物理混合过程中均匀分散并牢固地附着在纳米立方WO3上。阳离子亚甲基蓝(MB)和阴离子橙G(OG)在WO3-ZnO(1:9重量百分比)混合物的存在下通过电荷转移机理进行降解。由于光生电子空穴的复合减少,光催化反应得以增强。两种染料的90%的高度降解归因于混合氧化物的活性,该活性远高于单独使用WO3或ZnO所获得的活性。

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