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Inhibitory Effect of Increasing Milling Time on Anatase to Rutile Phase Transformation of Mecanochemically Synthesized Titania Nanoparticles

机译:跨越磨削时间对析碱基纳米胺纳米粒子锐钛酶的抑制作用

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Mechanochemical processing of TiOSO_4 precursor has been used to produce nanocrystalline powders of titania (TiO_2). This process involves high energy ball milling of precursor with NaCl as diluent phase and post heat treatment of as-milled powder. Subsequent washing with distilled water was then used to recover a nanocrystalline titania by removing the sodium chloride salt matrix which effectively seprated the titania powder particles during heat treatment and washing stages. The effect of milling time on TiO_2 nanocrystalline size and anatase to rutile transformation (A→R) was investigated. Characterization of the powder was performed by Thermograviometric Analysis (TGA), X-ray diffraction (XRD) and Transmission Electron Microscopy (TEM). Experimental results show that increasing the milling time can effectively reduce the nanocrystalline size of TiO_2 and inhibit A_R. Also it was found that particles have equiaxed morphology with the crystallite size in rang of 5-28 nm and narrow particle size distribution.
机译:Tioso_4前体的机械化学加工已被用于生产二氧化钛(TiO_2)的纳米晶体粉末。该方法涉及用NaCl的前体作为稀释阶段的高能量球研磨,并磨削粉末的后热处理。然后使用用蒸馏水洗涤通过除去在热处理和洗涤阶段中有效地脱氧化钛粉末颗粒的氯化钠盐基质来回收纳米晶二氧化纳米碘。研究了研磨时间对TiO_2纳米晶体尺寸和锐钛矿对金红石转化(A→R)的影响。粉末的表征是通过热预测分析(TGA),X射线衍射(XRD)和透射电子显微镜(TEM)进行的。实验结果表明,增加铣削时间可以有效地降低TiO_2的纳米晶体尺寸并抑制A_R。结果发现,颗粒具有等式的形态,具有5-28nm的r rg的微晶尺寸和窄的粒度分布。

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