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Cr(VI) Removal on Visible Light Active TiO_2 Nanotube Arrays

机译:在可见光有源TiO_2纳米管阵列上取下CR(VI)

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Self-organized TiO_2 nanotube (TNT) arrays were fabricated by anodic oxidation of titanium foil in three different fluoride electrolytes: ethylene glycol (EG), glycerol, and sodium sulfate (Na2SO_4) at different voltage and anodization time. In these electrolytes, the TNTs were produced in~ 2 μm long, but at the different diameter. The size of inner diameter can be arranged from the largest to the smallest value in the order of glycerol> EG> Na2SO_4. Crystallization of the TNTs by annealing was led to the formation of anatase-TiO_2. The sample can be activated under natural sunlight for reduction of hexavalent chromium, Cr(VI) into trivalent chromium, Cr(III). The reduction was thought to occur via synergistic reactions between adsorption and photoreduction. The result demonstrates 100 % of Cr(VI) removal efficiency over the TNTs grown in EG after 120 min. Whereas, only 48 % and 45 % of Cr(VI) can be removed over the TNTs fabricated in glycerol and Na2SO_4, respectively. High photocatalytic activity of the TNTs-EG can be attributed to high crystallinity of anatase phase, enhanced Cr(VI) adsorption, and less electron-hole recombination due to smoother tube walls.
机译:通过在不同电压和阳极氧化时间的三种不同氟化物电解质中的钛箔阳极氧化钛箔的阳极氧化来制造自组织的TiO_2纳米管(TNT)阵列。在这些电解质中,TNT在〜2μm长,但直径不同。内径的尺寸可以从甘油>例如> Na2SO_4的阶数从最大到最小值排列。通过退火的TNT结晶导致anatase-TiO_2的形成。样品可以在天然阳光下激活,用于将六价铬,Cr(VI)还原为三价铬,Cr(III)。认为减少通过吸附和光射之间的协同反应发生。结果表明,在120分钟后生长的TNT上的100%Cr(VI)去除效率。然而,在甘油和Na2SO_4中制造的TNT上,只能除去48%和45%的Cr(VI)。 TNTS的高光催化活性 - 例如,可归因于锐钛矿相的高结晶度,增强的Cr(VI)吸附,并且由于流畅的管壁而较低的电子空穴重组。

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