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首页> 外文期刊>Journal of Materials Science >Alkaline hydrothermal kinetics in titanate nanostructure formation
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Alkaline hydrothermal kinetics in titanate nanostructure formation

机译:钛酸盐纳米结构形成中的碱性水热动力学

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In this study, the mechanism of precursor dissolution and the influence of kinetics of dissolution on titanate nanotube formation were investigated. This comparative study explored the dissolution kinetics for the case of commercial titania powders, one composed of predominantly anatase (>95%) and the other rutile phase (>93%). These nanoparticle precursors were hydrothermally reacted in 9 mol L~(-1) NaOH at 160 °C over a range of reaction times of between 2 and 32 h. The high surface area nanotube-form product was confirmed using X-ray diffraction, FT-Raman spectroscopy, and transmission electron microscopy. The concentration of nanotubes produced from the different precursors was established using Rietveld analysis with internal and external corundum standardization to calibrate the absolute concentrations of the samples. Interpretation of the dissolution process of the precursor materials indicated that the dissolution of anatase proceeds via a zero-order kinetic process, whereas rutile dissolution is through a second-order process. The TiO_2 nanostructure formation process and mechanism of TiO_2 precursor dissolution was confirmed by non-invasive dynamic light scattering measurements. Significant observations are that nanotube formation occurred over a broad range of hydrothermal treatment conditions and was strongly influenced by the order of precursor dissolution.
机译:在这项研究中,研究了前体溶解的机理以及溶解动力学对钛酸酯纳米管形成的影响。这项比较研究探索了商业二氧化钛粉末的溶解动力学,其中一种主要由锐钛矿(> 95%)组成,另一种由金红石相(> 93%)组成。这些纳米颗粒前体在160℃下于9 mol L〜(-1)NaOH中水热反应,反应时间为2至32 h。使用X射线衍射,FT-拉曼光谱和透射电子显微镜确认高表面积纳米管形式的产物。使用Rietveld分析并通过内部和外部刚玉标准化来确定由不同前体产生的纳米管的浓度,以校准样品的绝对浓度。前体材料溶解过程的解释表明,锐钛矿的溶解是通过零级动力学过程进行的,而金红石溶解是通过二级过程进行的。通过无创动态光散射测量证实了TiO_2纳米结构的形成过程和TiO_2前驱体溶解的机理。重要的观察结果是纳米管的形成发生在广泛的水热处理条件下,并且受前体溶解顺序的强烈影响。

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