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低溫燃燒法合成納米二氧化鈦粉體研究

Synthesis of titanium dioxide nanopowders by a low-temperature combustion method

  • 摘要: 采用一種簡便、快速、低溫的溶膠凝膠自蔓延燃燒法制備了納米TiO2粉體顆粒.從檸檬酸絡合反應的機理闡釋了納米TiO2粒子的形成過程.通過熱綜合分析、X射線衍射和透射電鏡分析探討了金屬離子與檸檬酸的摩爾比和溶液雜質離子的存在對TiO2粉體顆粒物相組成及粉末晶粒尺寸大小的影響.本實驗制備了粒徑為40~90 nm分散性較好的球形狀TiO2納米顆粒.X射線衍射結果表明,當摩爾比為0.5時,自燃合成產物中金紅石相的質量分數達到91%.

     

    Abstract: TiO2 nanopowders were synthesized via a simple, quick and sol-gel low-temperature combustion method. Their formation mechanism was explained from the chelating action of citrates. The effects of the molar ratio of metal ions to citric acid and the presence of impurity ions on the phase forming of TiO2 nanoparticles and the crystallite size of the synthesized powders were investigated by thermal analyses (DTA/TG), X-ray diffraction (XRD) and transmission electron microscopy (TEM). Spheric TiO2 nanoparticles whose sizes are in the range of 40 to 90 nm are successfully prepared in the experiment. XRD results show that the mass fraction of rutile in the synthesized powers reaches 91% when the molar ratio of metal ions to citric acid is 0.5.

     

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