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首页> 外文期刊>Journal of Microscopy >Structural studies of pulsed-laser deposited nanocomposite metal-oxide films.
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Structural studies of pulsed-laser deposited nanocomposite metal-oxide films.

机译:脉冲激光沉积纳米复合金属氧化物薄膜的结构研究。

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摘要

Pulsed laser deposition in vacuum has been used to develop metal-oxide nanocomposite films with well controlled structural quality. Results for the copper-aluminium oxide (Cu:Al2O3) system are used to illustrate the main morphological and structural features of these films. High resolution transmission electron microscopy (TEM) analysis shows that the films consist of Cu nanocrystals with average dimensions that can be controlled between 2 nm and 10 nm embedded in an amorphous Al2O3 matrix. It is observed that the in-plane shape of the nanocrystals evolves from circular to elongated, and the number of nanocrystals per unit area decreases as their size increases. This evolution is explained in terms of nucleation at the substrate surface and coalescence during the later stages of growth. The thermal stability of the films has been studied by in situ TEM annealing and no transformation could be observed up to about 800 degrees C when partial crystallization of the Al2O3 starts.
机译:真空中的脉冲激光沉积已用于开发结构质量可控的金属氧化物纳米复合薄膜。铜铝氧化物(Cu:Al2O3)系统的结果用于说明这些膜的主要形态和结构特征。高分辨率透射电子显微镜(TEM)分析表明,该膜由Cu纳米晶体组成,其平均尺寸可以控制在2 nm至10 nm之间,并嵌入无定形Al2O3基质中。可以观察到,纳米晶体的面内形状从圆形演变为细长形,并且每单位面积的纳米晶体的数量随着其尺寸的增加而减少。这种演化是根据衬底表面的成核和生长后期的聚结来解释的。已经通过原位TEM退火研究了膜的热稳定性,并且当Al 2 O 3的部分结晶开始时,直到约800℃都没有观察到相变。

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