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>In-situ Observation of Size and Irradiation Effects on Thermoelectric Properties of Bi-Sb-Te Nanowire in FIB Trimming
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In-situ Observation of Size and Irradiation Effects on Thermoelectric Properties of Bi-Sb-Te Nanowire in FIB Trimming
In this report, the thermoelectric properties of a Bi0.8Sb1.2Te2.9 nanowire (NW) were in-situ studied as it was trimmed from 750 down to 490 and 285 nm in diameter by a focused ion beam. While electrical and thermal conductivities both indubitably decrease with the diameter reduction, the two physical properties clearly exhibit different diameter dependent behaviors. For 750 and 490 nm NWs, much lower thermal conductivities (0.72 and 0.69 W/m-K respectively) were observed as compared with the theoretical prediction of Callaway model. The consequence indicates that in addition to the size effect, extra phonon scattering of defects created by Ga ion irradiation was attributed to the reduction of thermal conductivities. As the NW was further trimmed down to 285 nm, both the electrical and thermal conductivities exhibited a dramatic reduction which was ascribed to the formation of amorphous structure due to Ga ion irradiation. The size dependence of Seebeck coefficient and figure of merit (ZT) show the maximum at 750 nm, then decrease linearly with size decrease. The study not only provides the thoroughly understanding of the size and defect effects on the thermoelectric properties but also proposes a possible method to manipulate the thermal conductivity of NWs via ion irradiation.
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机译:在此报告中,通过聚焦离子束将Bi0.8Sb1.2Te2.9纳米线(NW)的直径从750减小到490和285 nm,进行了原位研究。虽然电导率和热导率都随直径减小而不可避免地降低,但两种物理性质显然表现出不同的直径依赖性行为。与Callaway模型的理论预测相比,对于750和490nm的NW,观察到的热导率要低得多(分别为0.72和0.69 W / m-K)。结果表明,除尺寸效应外,Ga离子辐照产生的缺陷的额外声子散射还归因于导热系数的降低。随着NW进一步减小至285 nm,电导率和热导率均显示出显着降低,这归因于由于Ga离子辐照而形成的非晶结构。塞贝克系数和品质因数(ZT)的尺寸依赖性在750nm处表现出最大值,然后随着尺寸的减小而线性减小。该研究不仅提供了对尺寸和缺陷对热电性质的影响的透彻了解,而且提出了一种通过离子辐照来控制NW的热导率的可能方法。
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