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A One‐Step Approach to the Synthesis of High Aspect Ratio Titania Nanoflakes

机译:一步法合成高长径比二氧化钛纳米薄​​片

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摘要

High aspect ratio TiO2 nanoflakes are synthesized by a one‐step modified surface hydrolysis method. Surface morphology and physical dimensions are characterized using scanning electron microscopy, laser diffraction analysis, and transmission electron microscopy. Microsized flakes having a thickness ≈40 nm are successfully synthesized by spreading an oil phase consisting of titanium tetraisopropoxide and a low surface tension hydrocarbon on the surface of water. Pure anatase phase crystalline titania nanoflakes are obtained by calcining at 400 °C without changing the shape and thickness of flakes. Relatively higher specific surface area (2–6 times) and less crystal defects enhance photocatalytic activities of nanoflakes due to more surface reaction sites and the suppression of fast recombination. By performing dye degradation under ultraviolet illumination, titania nanoflakes exhibit the higher photocatalytic efficiency over the commercial photocatalyst, Degussa P25. As far as it is known, this method is the most efficient and cost effective process for making low‐dimensional nanomaterials in a continuous manner. These titania flakes can be easily separated from the treated water by simply sedimentation or filtration and therefore is very suitable for water purification application.
机译:通过一步改进的表面水解方法合成了高长径比的TiO2纳米片。使用扫描电子显微镜,激光衍射分析和透射电子显微镜来表征表面形态和物理尺寸。通过将由四异丙醇钛和低表面张力烃组成的油相铺展在水表面上,可以成功地合成出厚度约为40纳米的薄片。通过在400°C下煅烧而不会改变薄片的形状和厚度,可以获得纯的锐钛矿相结晶二氧化钛纳米薄​​片。相对较高的比表面积(2–6倍)和较少的晶体缺陷会增强纳米薄片的光催化活性,这是由于更多的表面反应位点和对快速重组的抑制。通过在紫外线照射下进行染料降解,二氧化钛纳米薄​​片显示出比市售光催化剂Degussa P25更高的光催化效率。据了解,该方法是连续生产低维纳米材料的最有效,最具成本效益的方法。这些二氧化钛薄片可以通过简单的沉淀或过滤而容易地与处理后的水中分离,因此非常适合于水净化应用。

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