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Preparation and characterization of titania based nanowires

机译:二氧化钛基纳米线的制备与表征

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摘要

A new method for preparation of titania nanowires with diameter around 10 nm and length up to 2–3 μm is described. The precursor was prepared from sodium titanate by adding ethylene glycole (EG) and heating at temperature of 198°C for 6 h under reflux. The sodium titanate glycolate formed by this way aggregated into 1D nanostructures and was subsequently transformed into titania glycolate during a chemical treatment with 98% sulfuric acid. Titania nanowires with variable amount of anatase and rutile were prepared by heating to temperatures in the range 350–1000°C. The precursor as well as titania based samples were characterized by X-ray diffraction, Infrared spectroscopy, Scanning electron microscopy, High resolution transmission microscopy, Thermogravimetry, Differential thermal analysis, Evolved gas analysis and Emanation thermal analysis. The nitrogen adsorption/desorption was used for surface area and porosity determination. The photoactivity of the prepared titania samples was assessed by the photocatalytic decomposition of 4-chlorophenol in an aqueous slurry under UV irradiation of 365 nm wavelength.
机译:描述了一种新的制备二氧化钛纳米线的方法,该纳米线的直径约为10 nm,长度可达2-3μm。通过添加乙二醇(EG)并在198°C的温度下加热6小时,由钛酸钠制备前体。通过这种方式形成的钛酸钠乙醇酸酯聚集成一维纳米结构,随后在用98%硫酸进行化学处理期间转化为乙醇酸二氧化钛。通过加热到350–1000°C的温度来制备具有可变数量的锐钛矿型和金红石型的Titania纳米线。通过X射线衍射,红外光谱,扫描电子显微镜,高分辨率透射显微镜,热重分析,差示热分析,逸出气体分析和排放热分析对前体以及基于二氧化钛的样品进行了表征。氮吸附/解吸用于表面积和孔隙率测定。制备的二氧化钛样品的光活性通过在365 nm波长的紫外线照射下,对水性浆料中的4-氯苯酚进行光催化分解来评估。

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