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New Method for Preparation of Nano Alumina Powder Using Aluminum(III) Complexes by Combustion Synthesis Without Fuel

机译:无燃料燃烧合成铝(III)配合物制备纳米氧化铝粉的新方法

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摘要

Alumina nanomaterials were synthesized via a solution combustion technique using tris-(acetylacetonato) aluminum(III) complex (1) and tris-(2-formylphenolate) aluminum(III) complex (2) at 600, and 1000 °C for 3h. The obtained data showed that the procedure without using fuel resulted in a better phase and morphology. To investigate the phase formation, powder X-ray diffraction technique was used. Also, FESEM micrographs were used to investigate the morphology of the obtained materials. It showed that the morphology of the obtained materials was in the form of different types of porous and particle materials. The optical properties of the obtained materials were studied by FTIR spectra. According to the data, it was found that with annealing at 600 °C, the phase formation of the obtained materials showed cubic crystal structures with cell parameter a = 3.14 ? for gamma phase. With increasing the annealing temperature to 1000 °C, the obtained material was found to be in a mixture of orthorhombic and hexagonal crystal structures.
机译:通过溶液燃烧技术,使用三-(乙酰丙酮基)铝(III)配合物(1)和三-(2-甲酰基苯酚盐)铝(III)配合物(2),在600℃和1000℃下合成氧化铝纳米材料。获得的数据表明,不使用燃料的过程导致更好的相和形态。为了研究相形成,使用了粉末X射线衍射技术。此外,FESEM显微照片用于研究所得材料的形态。结果表明,所得材料的形态为不同类型的多孔材料和颗粒材料的形式。通过FTIR光谱研究获得的材料的光学性质。根据该数据,发现在600℃下进行退火时,所获得的材料的相形成显示出立方晶结构,晶胞参数a =3.14≤m。对于γ相。随着退火温度增加到1000℃,发现获得的材料是正交晶和六方晶体结构的混合物。

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