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Direct fabrication of anatase/activated carbon nano-hybrid materials by hydrothermal with ball milling method at low temperature

机译:低温水热球磨法直接制备锐钛矿/活性炭纳米杂化材料

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摘要

Nano-hybrid materials of anatase and activated carbon were fabricated in a single step by a hydrothermal with ball milling method (H with B) using a conventional autoclave and SiC balls at 180°C. To investigate the influence of ball milling and activated carbon, a hydrothermal method without ball milling (H without B) and a carbonless hydrothermal method with ball milling (Carbonless H with B) were performed. By comparing the three samples based on Transmission Electron Microscopy (TEM) observation and Selected Area Electron Diffraction (SAED) analysis, it was revealed that TiO2 particles in the hybrid materials heterogeneously nucleate on the activated carbon and have a tendency of crystal growth along the c axis under the given experimental condition. The crystal growth direction was controlled isotropically by assisting the ball milling during reaction. The balls seem to act as a stirrer rather than a grinder for the sample containing the activated carbon.
机译:通过使用常规高压釜和SiC球在180°C下通过水热球磨法(H与B)通过水热一步制备了锐钛矿和活性炭的纳米混合材料。为了研究球磨和活性炭的影响,进行了无球磨的水热法(H,无B)和无球磨的无碳水热法(无碳,H,B)。通过透射电子显微镜(TEM)观察和选择区域电子衍射(SAED)分析对三种样品进行比较,发现杂化材料中的TiO2 颗粒在活性炭上异质成核,并具有结晶的趋势。在给定的实验条件下沿c轴生长。通过在反应过程中辅助球磨,各向同性地控制晶体的生长方向。对于包含活性炭的样品,这些球似乎起搅拌器的作用,而不是研磨机。

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  • 来源
    《Journal of Materials Science》 |2006年第5期|1363-1368|共6页
  • 作者单位

    Materials and Structures Laboratory Tokyo Institute of Technology;

    Materials and Structures Laboratory Tokyo Institute of Technology;

    Materials and Structures Laboratory Tokyo Institute of Technology;

    Materials and Structures Laboratory Tokyo Institute of Technology;

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  • 正文语种 eng
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