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Titanium-based silicide quantum dot superlattices for thermoelectrics applications

机译:用于热电应用的钛基硅化物量子点超晶格

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Ti-based silicide quantum dot superlattices (QDSLs) are grown by reduced-pressure chemical vapor deposition. They are made of titanium-based silicide nanodots scattered in an n-doped SiGe matrix. This is the first time that such nanostructured materials have been grown in both monocrystalline and polycrystalline QDSLs. We studied their crystallographic structures and chemical properties, as well as the size and the density of the quantum dots. The thermoelectric properties of the QDSLs are measured and compared to equivalent SiGe thin films to evaluate the influence of the nanodots. Our studies revealed an increase in their thermoelectric properties -specifically, up to a trifold increase in the power factor, with a decrease in the thermal conductivity-making them very good candidates for further thermoelectric applications in cooling or energy-harvesting fields.
机译:钛基硅化物量子点超晶格(QDSL)通过减压化学气相沉积法生长。它们由散布在n掺杂的SiGe矩阵中的钛基硅化物纳米点制成。这是这种纳米结构材料首次在单晶和多晶QDSL中生长。我们研究了它们的晶体结构和化学性质,以及量子点的大小和密度。测量QDSL的热电性能,并将其与等效的SiGe薄膜进行比较,以评估纳米点的影响。我们的研究表明,它们的热电特性有所提高-特别是功率因数增加了三倍,而导热系数却下降了,这使其成为在冷却或能量收集领域中进一步热电应用的良好候选者。

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