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Low temperature synthesis of nanocrystalline Sb2Te3 by mechanical alloying

机译:机械合金化低温合成纳米晶Sb2Te3

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摘要

Sb40Te60 thermoelectric compound was fabricated via mechanical milling of bismuth and tellurium as starting materials. Effects of the milling time and heat treatment were investigated. X-ray diffraction (XRD) was used for the characterization of the ball-milled powders. Thermal behavior of the mechanically alloyed powders was studied by differential thermal analysis (DTA) and the morphological evolutions were monitored by scanning electron microscopy (SEM). Results showed that the reaction between Sb and Te initiated after 5 h of milling and completed after 10 h. The synthesized Sb2Te3 had anisotropic property with the mean grain size of 13 nm at the end of milling. Also this compound could not be formed during heating by DTA at low temperatures (< 500 degrees C). Under the sintering conditions the maximum values of electrical conductivity and power factor were found to be 860 (Omega cm)(-1) and 45 (mu W cm(-1) K-1), respectively.
机译:通过以铋和碲为起始原料进行机械研磨制备了Sb40Te60热电化合物。研究了研磨时间和热处理的影响。 X射线衍射(XRD)用于球磨粉的表征。通过差热分析(​​DTA)研究了机械合金化粉末的热行为,并通过扫描电子显微镜(SEM)监测了形态演变。结果表明,Sb和Te之间的反应在研磨5小时后开始,并在10小时后完成。合成的Sb2Te3具有各向异性,在研磨结束时平均晶粒尺寸为13 nm。同样,在低温(<500摄氏度)下通过DTA加热过程中也不会形成该化合物。在烧结条件下,电导率和功率因数的最大值分别为860(Ωcm)(-1)和45(mu W cm(-1)K-1)。

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