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通过声显微镜检测基于 Bi₂Te₃ 的纳米结构热电材料的内部裂纹和超声特性。

Detection of internal cracks and ultrasound characterization of nanostructured Bi₂Te₃-based thermoelectrics via acoustic microscopy.

机构信息

Technological Institute for Superhard and Novel Carbon Materials 142190, Centralnaya 7a, Troitsk, Moscow Region, Russia.

出版信息

Ultrasonics. 2011 Aug;51(6):715-8. doi: 10.1016/j.ultras.2011.02.005. Epub 2011 Mar 4.

Abstract

The search for thermoelectric (TE) materials for highly efficient devices aims at improving the TE efficiency and broadening their areas of applications. We created nanostructured thermoelectric Bi-Sb-Te-family materials by high energy (ball milling) pre-treatment of the parent materials followed by high-pressure/high-temperature treatment. Bi₀.₅Sb₁.₅Te₃ compositions with the superfluous maintenance of tellurium was used for the synthesis of the samples with p-type electrical conductivity. Acoustic microscopy was used to study elastic properties and bulk irregularities and to detection of internal cracks both in the parent materials and in the created nanostructured samples. The data has been used for optimization of parameters of synthesis of nanostructured thermoelectrics.

摘要

寻找高效器件用的热电 (TE) 材料旨在提高 TE 效率并拓宽其应用领域。我们通过高能(球磨)预处理原料,然后进行高压/高温处理,制备了纳米结构的 Bi-Sb-Te 族热电材料。使用 Bi₀.₅Sb₁.₅Te₃ 组成物,过量保持碲,用于合成具有 p 型电导率的样品。声显微镜用于研究弹性性质和体不均匀性,并检测母体材料和所创建的纳米结构样品中的内部裂纹。这些数据用于优化纳米结构热电材料合成的参数。

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