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首页> 外文期刊>Journal of the European Ceramic Society >Synthesis of ultra thin alpha-alumina nanobelts from aluminum powder by chemical vapor deposition
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Synthesis of ultra thin alpha-alumina nanobelts from aluminum powder by chemical vapor deposition

机译:化学气相沉积法由铝粉合成超薄α-氧化铝纳米带

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摘要

Ultra thin a-alumina nanobelts with single-crystalline rhombohedral structure were obtained by oxidizing Al in moisturized air under reduced pressure. It was found that the length and width of the nanobelts increased with sintering time. By preparing the samples in different environments, it was demonstrated that the presence of oxygen was essential to the formation of the alumina nanobelts, while the presence of water vapor substantially increased the yield. The epitaxial growth of the nanobelts was also studied. Belts tended to grow parallel to the (0001) sapphire substrate, but 60 deg and 90 deg to the (1010) and the (1120) substrates, respectively. The vapor-solid mechanism and molecule impinging model were proposed to describe the growing process. This method provides a simple and cost-effective route for preparing a-alumina nanobelts.
机译:通过在潮湿的空气中减压氧化铝,获得具有单晶菱形结构的超薄a-氧化铝纳米带。发现纳米带的长度和宽度随着烧结时间而增加。通过在不同环境中制备样品,证明了氧的存在对氧化铝纳米带的形成至关重要,而水蒸气的存在则大大提高了产率。还研究了纳米带的外延生长。传送带倾向于平行于(0001)蓝宝石衬底生长,但分别与(1010)和(1120)衬底成60度和90度。提出了汽固机理和分子撞击模型来描述其生长过程。该方法为制备α-氧化铝纳米带提供了一种简单且经济有效的途径。

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