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One-step synthesis of mesoporous platinum/titania nanocomposites as photocatalyst with enhanced photocatalytic activity for methanol oxidation

机译:一步合成介孔铂/二氧化钛纳米复合材料作为光催化剂,具有增强的甲醇氧化光催化活性

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摘要

Mesostructured Pt/TiO2 nanocomposites have been synthesized at different Pt (0–2 wt%) and anatase/rutile ratios through simple one-step sol–gel reactions. The as-made mesostructured hybrids were subjected to H2 gas for 2 h at 450 °C to obtain ordered hexagonal mesoporous Pt/TiO2 nanocomposites with highly crystalline TiO2. Subsequently, the samples were calcined at 350 °C in air for 4 h to remove the surfactant. XRD data clearly show that biphasial anatase and rutile mixtures are formed by the addition of the Pt islands. The TEM results indicated that TiO2 and Pt, are partly in close contact; the lattice fringes exhibit the typical distances, i.e., Pt (111) (2.2 Å) and TiO2 (101) (3.54 Å). TiO2 nanoparticles with an average diameter of about 10 nm particles are not agglomerated and quite uniform in size and shape. Also, Pt nanoparticles are well dispersed and exhibit diameters of about 5–12 nm based on the Pt content. Our photocatalysts have been compared with colloidal 0.5 wt% Pt loaded onto commercial photocatalysts either UV-100 Hombikat or Aeroxide TiO2 P25 by the determination of the initial rate of HCHO formation generated by the photooxidation of CH3OH in aqueous suspensions to calculate the corresponding photonic efficiencies. The overall photocatalytic activities of 0.5 wt% Pt/TiO2 nanocomposites are significantly 3-times higher than that of colloidal 0.5 wt% Pt loaded onto commercial photocatalysts either UV-100 Hombikat or Aeroxide TiO2 P25. To the best of our knowledge, the measured photonic efficiency ξ = 15.5% of hexagonal mesostructured Pt/TiO2 nanocomposites is found to be among the highest ξ values reported up to now. The superiority of Pt/TiO2 is attributed to the bicrystalline (anatase/rutile) framework, large surface area, high crystallinity and mesoporous structure of Pt/TiO2 nanocomposites.
机译:介孔结构的Pt / TiO2纳米复合材料通过简单的一步式溶胶-凝胶反应以不同的Pt(0-2 wt%)和锐钛矿/金红石比合成。将制成的介孔结构杂化体在450°C下暴露于氢气中2 h,以获得具有高度结晶性TiO2的有序六角形介孔Pt / TiO2纳米复合材料。随后,将样品在350摄氏度的空气中煅烧4小时,以去除表面活性剂。 XRD数据清楚地表明,通过添加Pt岛形成了双相锐钛矿和金红石混合物。 TEM结果表明,TiO2和Pt部分紧密接触。晶格条纹表现出典型的距离,即Pt(111)(2.2Å)和TiO2(101)(3.54Å)。平均直径约为10 nm的TiO2纳米颗粒没有团聚,并且尺寸和形状相当均匀。同样,Pt纳米颗粒分散良好,并且基于Pt含量显示出约5–12 nm的直径。通过确定由水悬浮液中CH3OH的光氧化产生的HCHO形成的初始速率,可以将我们的光催化剂与负载在商业光催化剂UV-100 Hombikat或Aeroxide TiO2 P25上的胶体重量百分比为0.5 wt%的Pt进行比较,以计算相应的光子效率。 0.5 wt%Pt / TiO2纳米复合材料的总体光催化活性比负载在商业光催化剂UV-100 Hombikat或Aeroxide TiO2 P25上的胶体0.5 wt%Pt的总光催化活性高3倍。据我们所知,测得的六方中观结构的Pt / TiO2纳米复合材料的光子效率ξ= 15.5%,是迄今为止报道的最高ξ值之一。 Pt / TiO2的优越性归因于Pt / TiO2纳米复合材料的双晶(锐钛矿/金红石)骨架,大表面积,高结晶度和中孔结构。

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