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首页> 外文期刊>International Journal of Quantum Chemistry >Nanosized aluminum nitride hollow spheres formed through a self-templating solid-gas interface reaction
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Nanosized aluminum nitride hollow spheres formed through a self-templating solid-gas interface reaction

机译:通过自模板固-气界面反应形成的纳米尺寸氮化铝空心球

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Nanosized aluminum nitride hollow spheres were synthesized by simply heating aluminum nanoparticles in ammonia at 1000 degrees C. The as-synthesized sphere shells are polycrystalline with cavity diameters ranging from 15 to 100 nm and shell thickness from 5 to 15 nm. The formation mechanism can be explained by the nanoscale Kirkendall effect.. which results from the difference in diffusion rates between aluminum and nitrogen. The Al nanoparticles served as both reactant and templates for the hollow sphere formation. The effects of precursor particle size and temperature were also investigated in terms of product morphology. Room temperature cathode luminescence spectrum of the nanosized hollow spheres showed a broad emission band centered at 415 nm, which is originated from oxygen related luminescence centers. The hollow structure survived a 4-h heat treatment at 1200 degrees C, exhibiting excellent thermal stability. (c) 2006 Elsevier Inc. All rights reserved.
机译:纳米尺寸的氮化铝空心球是通过简单地将铝纳米颗粒在1000摄氏度的氨中加热而合成的。合成后的球形壳是多晶的,腔体直径在15至100 nm之间,壳的厚度在5至15 nm之间。形成机理可以用纳米级的柯肯德尔效应来解释,这是由铝和氮之间扩散速率的差异引起的。 Al纳米颗粒既用作反应物又用作中空球形成的模板。还根据产物的形态研究了前体粒径和温度的影响。纳米级空心球的室温阴极发光光谱显示出以415 nm为中心的宽发射带,其起源于与氧有关的发光中心。空心结构在1200摄氏度的温度下经过4小时的热处理,表现出出色的热稳定性。 (c)2006 Elsevier Inc.保留所有权利。

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