首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Implications of Precursor Chemistry on the Alkaline Hydrothermal Synthesis of Titania/ Titanate Nanostructures
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Implications of Precursor Chemistry on the Alkaline Hydrothermal Synthesis of Titania/ Titanate Nanostructures

机译:前体化学性质对碱性水热合成二氧化钛/钛酸酯纳米结构的影响

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A systematic study of four parameters within the alkaline hydrothermal treatment of three commercial titania powders-anatase, rutile, and Degussa P25-was made. These powders were treated with 5, 7.5, 9, and 10 M NaOH between 100 and 220 °C for 20 h. The effects of alkaline concentration, hydrothermal temperature, and precursor phase and crystallite size on the resultant nanostructure formation have been studied through X-ray diffraction, Raman spectroscopy, transmission electron microscopy, and nitrogen adsorption. Through the correlation of these data, morphological phase diagrams were constructed for each commercial powder. Interpretation of the resultant morphological phase diagrams indicates that alkaline concentration and hydrothermal temperature affect nanostructure formation independently, where nanoribbon formation is significantly influenced by temperature for initial formation. The phase and crystallite size of the precursor also significantly influenced nanostructure formation, with rutile displaying a slower rate of precursor consumption compared with anatase. Small crystallite titania precursors formed nanostructures at reduced hydrothermal temperatures.
机译:进行了对三种商业二氧化钛粉末的碱性水热处理中四个参数的系统研究,即锐钛矿,金红石和Degussa P25。这些粉末在100和220°C之间用5、7.5、9和10 M NaOH处理20小时。通过X射线衍射,拉曼光谱,透射电子显微镜和氮吸附研究了碱浓度,水热温度,前体相和微晶尺寸对所得纳米结构形成的影响。通过这些数据的相关性,为每种商品粉末构建了形态相图。所得到的形态相图的解释表明,碱浓度和水热温度独立地影响纳米结构的形成,其中纳米带的形成受到初始形成温度的显着影响。前体的相和微晶尺寸也显着影响纳米结构的形成,与锐钛矿相比,金红石显示出较慢的前体消耗速率。小晶粒的二氧化钛前体在降低的水热温度下形成纳米结构。

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