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首页> 外文期刊>Molecules >Growth, Structure, and Photocatalytic Properties of Hierarchical V2O5–TiO2 Nanotube Arrays Obtained from the One-step Anodic Oxidation of Ti–V Alloys
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Growth, Structure, and Photocatalytic Properties of Hierarchical V2O5–TiO2 Nanotube Arrays Obtained from the One-step Anodic Oxidation of Ti–V Alloys

机译:Ti-V合金的一步阳极氧化获得的分层V2O5-TiO2纳米管阵列的生长,结构和光催化性能

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V2O5-TiO2 mixed oxide nanotube (NT) layers were successfully prepared via the one-step anodization of Ti-V alloys. The obtained samples were characterized by scanning electron microscopy (SEM), UV-Vis absorption, photoluminescence spectroscopy, energy-dispersive X-ray spectroscopy (EDX), X-ray diffraction (DRX), and micro-Raman spectroscopy. The effect of the applied voltage (30–50 V), vanadium content (5–15 wt %) in the alloy, and water content (2–10 vol %) in an ethylene glycol-based electrolyte was studied systematically to determine their influence on the morphology, and for the first-time, on the photocatalytic properties of these nanomaterials. The morphology of the samples varied from sponge-like to highly-organized nanotubular structures. The vanadium content in the alloy was found to have the highest influence on the morphology and the sample with the lowest vanadium content (5 wt %) exhibited the best auto-alignment and self-organization (length = 1 μm, diameter = 86 nm and wall thickness = 11 nm). Additionally, a probable growth mechanism of V2O5-TiO2 nanotubes (NTs) over the Ti-V alloys was presented. Toluene, in the gas phase, was effectively removed through photodegradation under visible light (LEDs, λmax = 465 nm) in the presence of the modified TiO2 nanostructures. The highest degradation value was 35% after 60 min of irradiation. V2O5 species were ascribed as the main structures responsible for the generation of photoactive e? and h+ under Vis light and a possible excitation mechanism was proposed. View Full-Text
机译:通过Ti-V合金的一步阳极氧化,成功制备了V2O5-TiO2混合氧化物纳米管(NT)层。通过扫描电子显微镜(SEM),UV-Vis吸收,光致发光光谱,能量色散X射线光谱(EDX),X射线衍射(DRX)和显微拉曼光谱对所得样品进行表征。系统研究了施加电压(30–50 V),合金中钒含量(5–15 wt%)和乙二醇基电解质中水含量(2–10 vol%)的影响,以确定它们的影响这些纳米材料的形态和首次涉及到光催化性能。样品的形态从海绵状到高度组织的纳米管结构不等。发现合金中的钒含量对形态具有最大影响,钒含量最低(5 wt%)的样品表现出最佳的自动排列和自组织性(长度= 1μm,直径= 86 nm和壁厚= 11 nm)。此外,还提出了V2O5-TiO2纳米管(NTs)在Ti-V合金上的可能生长机理。在改性的TiO2纳米结构存在下,在可见光(LED,λmax= 465 nm)下通过光降解有效地去除了气相中的甲苯。照射60分钟后,最高降解值为35%。 V2O5物种被认为是负责产生光敏电子的主要结构。并在可见光下激发了h +,并提出了可能的激发机理。查看全文

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