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Synthesis of aluminium nitride using urea-precursors

机译:使用尿素 - 前体合成氮化铝

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We synthesized AlN using aluminium chloride hexahydrate and urea as the starting materials. By directly introducing aluminium chloride into melted urea at 135°C, a urea-precursor was formed under non-aqueous conditions with noγ-Al{sub}2O{sub}3 observed in any calcination steps. As a result, well-crystalline AlN powder was obtained by the pyrolysis of urea-precursor above 900°C under a stream of N{sub}2 gas for 1 hour. In this process the urea-precursor decomposed below 400°C, and an AlN skeleton with a layer structure formed above 800°C. The total yield of AlN powder based on the Al atom was only 80% due to production of volatile Al(NH{sub}3){sub}6AlH{sub}4Cl{sub}2 as a by-product. The AlN powder was characterized by X-ray diffraction, infrared spectroscopy and scanning electron microscopy (SEM). Morphological observation of the AlN powder by mean of SEM revealed large particles of about 30-μm diameter, which consisted of ultrafine particles of less than 1-μm diameter.
机译:我们使用氯化铝六水合物和尿素作为原料合成ALN。通过在135℃下将氯化铝直接引入熔融尿素中,在任何煅烧步骤中观察到的NOγ-Al {Sub} 2O {Sub} 3,在非水条件下形成尿素前体。结果,通过在N {亚} 2气流下通过900℃的尿素分解获得良好的结晶AlN粉末1小时。在此过程中,尿素前体在400℃下分解,具有形成在800℃的层结构的ALN骨架。由于挥发性Al(NH {sub} 3){sub} 6Alh {sub} 2作为副产品,基于Al原子的AlN粉末的总产率仅为80%。 AlN粉末的特征在于X射线衍射,红外光谱和扫描电子显微镜(SEM)。通过SEM的平均形态学观察AlN粉末显示大约30μm直径的大颗粒,其由直径小于1μm的超细颗粒组成。

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