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Preparation And Characterization Of Ultrafine Alumina Via Sol-gel Polymeric Route

机译:溶胶-凝胶聚合法制备超细氧化铝及其表征

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Ultrafine alumina powder was prepared through resin formation between urea and formaldehyde. Aluminium stearate soap was introduced during resin preparation. Ethylene glycol was used to terminate the thermosetting reaction. Calcination of the product was carried out at 700,1000,1100,1300 and 1400℃ to obtain aluminium oxide. IR and Raman spectroscopic analysis indicated the occupation of Al~(3+) at different sites in the polymer network (C=O, -NH_2, C-O, -NH, and -CH_2OH). X-ray diffraction of powder calcined at 1000℃ revealed the presence of a mixture of α- and θ-alumina together, while a mixture of α- and β-alumina phases were obtained on calcination at 1400℃. Transmission electron microscope (TEM) examination of the powder fired at 700℃ showed uniform grains in the form of clusters with average size between 22.02 and 30.5 nm. Clusters are multi-particles as evident from the electron diffraction pattern. Crystallite size of alumina powder calcined at 1000℃ was found to be ≈25.67 nm, while that of powder calcined atl400℃ was ≈30.52 nm. The calculated specific surface area of alumina powder calcined at 1000℃ was 59.17 m~2 g~(-1), while that calcined at 1400℃ was 49.77 m~2 g~(-1).
机译:通过尿素和甲醛之间的树脂形成制备超细氧化铝粉末。在树脂制备过程中引入了硬脂酸铝皂。使用乙二醇终止热固性反应。在700、1000、1100、1300和1400℃下煅烧产物以获得氧化铝。红外光谱和拉曼光谱分析表明,Al〜(3+)在聚合物网络的不同位置(C = O,-NH_2,C-O,-NH和-CH_2OH)被占据。在1000℃下煅烧的粉末的X射线衍射表明,存在α-氧化铝和θ-氧化铝的混合物,而在1400℃煅烧时获得α-和β-氧化铝相的混合物。透射电子显微镜(TEM)检查在700℃下烧成的粉末显示出均匀的团簇状晶粒,平均尺寸在22.02至30.5 nm之间。从电子衍射图可以明显看出,团簇是多颗粒的。发现在1000℃下煅烧的氧化铝粉末的微晶尺寸为≈25.67nm,而在400℃下煅烧的粉末的微晶尺寸为≈30.52nm。计算得到的在1000℃煅烧的氧化铝粉的比表面积为59.17 m〜2 g〜(-1),而在1400℃煅烧的比表面积为49.77 m〜2 g〜(-1)。

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