论文标题

在双超晶格InASSB纳米线中的热导率的巨大降低

Giant reduction of thermal conductivity in twinning superlattice InAsSb nanowires

论文作者

Peri, Lorenzo, Prete, Domenic, Demontis, Valeria, Zannier, Valentina, Rossi, Francesca, Sorba, Lucia, Beltram, Fabio, Rossella, Francesco

论文摘要

半导体纳米结构对高效率废料恢复的高效率恢复有很大的希望。该领域的关键要求是降低热电材料的导热率,而不会降低其电气传输特性。在这项工作中,我们证明了由于存在有意实现的周期性晶格双平面,因此III-V半导体纳米线的热导率急剧降低。这些纳米结构的电和热传输已被探测并与它们的无孪晶纳米线相比,并将其与它们的无孪晶纳米线相比,显示出一个数量级的导热率降低,同时保持未更换的电气传输特性,从而产生了十个因子十个因子增强了ZT的热电学图。我们的研究首次报告了双晶纳米线中电气和热性能的实验测量,该特性是一种新型的纳米材料类,用于高效热能收获。

Semiconductor nanostructures hold great promise for high-efficiency waste heat recovery exploiting thermoelectric energy conversion, a technological breakthrough that could significantly contribute to providing environmentally friendly energy sources as well as in enabling the realization of self-powered biomedical and wearable devices. A crucial requirement in this field is the reduction of the thermal conductivity of the thermoelectric material without detrimentally affecting its electrical transport properties. In this work we demonstrate a drastic reduction of thermal conductivity in III-V semiconductor nanowires due to the presence of intentionally realized periodic crystal lattice twin planes. The electrical and thermal transport of these nanostructures, known as twinning superlattice nanowires, have been probed and compared with their twin-free counterparts, showing a one order of magnitude decrease of thermal conductivity while maintaining unaltered electrical transport properties, thus yielding a factor ten enhancement of the thermoelectric figure of merit, ZT. Our study reports for the first time the experimental measurement of electrical and thermal properties in twinning superlattice nanowires, which emerge as a novel class of nanomaterials for high efficiency thermoelectric energy harvesting.

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