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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Facile synthesis of preferential Bi_(0.5)Sb_(1.5)Te_(3.0) nanolayered thin films with high power factor by the controllable layer thickness
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Facile synthesis of preferential Bi_(0.5)Sb_(1.5)Te_(3.0) nanolayered thin films with high power factor by the controllable layer thickness

机译:可控层厚方便地合成高功率因数Bi_(0.5)Sb_(1.5)Te_(3.0)纳米薄膜

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摘要

Layer-by-layer assembly of nanostructured Bi_(0.5)Sb_(1.5)Te_3 thin films were prepared by a simple magnetron sputtering method. X-ray diffraction investigations revealed that all the thin films were well crystallized with preferred orientation along (00l) direction. Scanning electron microscopy images indicatedthat nanostructure of the condensed films was stacked by tens of parallel repeating layers. Meanwhile, the particular thicknesses of layers could be controlled in the range of 20–140 nm by adjusting the deposition time. The electrical conductivity and power factor were significantly increased compared with those of ordinary thin films, while the maximum power factor reached 53 lW cm~(-1) K~(-2) when the layer thickness was 40 nm. The multi-layered materials are promising candidates for miniaturized modules with their unique properties.
机译:通过简单的磁控溅射法制备了纳米结构的Bi_(0.5)Sb_(1.5)Te_3薄膜。 X射线衍射研究表明,所有薄膜均沿(00l)方向良好结晶并具有较好的取向。扫描电子显微镜图像表明,缩合膜的纳米结构被数十个平行重复层堆叠。同时,可以通过调整沉积时间将层的特定厚度控制在20–140 nm的范围内。与普通薄膜相比,电导率和功率因数显着提高,当层厚为40 nm时,最大功率因数达到53 lW cm〜(-1)K〜(-2)。多层材料具有独特的性能,有望成为微型模块的候选材料。

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