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首页> 外文期刊>Journal of Electronic Materials >Effects of Synthesis Parameters and Thickness on Thermoelectric Properties of Bi2Te3 Fabricated Using Mechanical Alloying and Spark Plasma Sintering
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Effects of Synthesis Parameters and Thickness on Thermoelectric Properties of Bi2Te3 Fabricated Using Mechanical Alloying and Spark Plasma Sintering

机译:合成参数和厚度对使用机械合金化和火花等离子体烧结制造的Bi2te3热电性能的影响

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摘要

Bi2Te3 compound has been shown to exhibit the highest thermoelectric figure of merit at 573 K to 673 K. Bi2Te3 samples were synthesized by mechanical alloying (MA) followed by spark plasma sintering (SPS) in this work. The effects of the milling and SPS parameters as well as the specimen thickness were evaluated to obtain the best microstructural and thermoelectric properties. To synthesize Bi2Te3, Bi and Te powders were mechanically alloyed under argon atmosphere in a stainless-steel vial with a ball-to-powder weight ratio of 15:1 for different durations. The synthesized powders were then sintered using SPS at different temperatures. To characterize the Bi2Te3 powders and bulk samples, x-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), and energy-dispersive spectroscopy (EDS) analysis were applied. Furthermore, the bandgap energy was measured by ultraviolet-visible (UV-Vis) spectroscopy. Moreover, the Seebeck voltage and electrical conductivity were determined at different temperatures. The experimental results illustrate that, by enhancing the sintering temperature from 623 K to 673 K, the maximum Seebeck coefficient was increased from 136 mu V/K to 156 mu V/K. To investigate the effect of thickness, specimens were sintered at the optimum temperature of 673 K with thicknesses of 1 mm, 1.5 mm, 2 mm, 3 mm, and 4 mm. The results showed that, by decreasing the thickness, the maximum Seebeck coefficient was increased from 144 mu V/K to 166 mu V/K while the electrical conductivity was increased from 0.35 x 10(5) S/m to 1.42 x 10(5) S/m, resulting in an increase in the power factor from 0.76 mW/m-K-2 to 3.94 mW/m-K-2.
机译:Bi2Te3化合物在573K至673K温度下表现出最高的热电优值。本研究采用机械合金化(MA)和火花等离子烧结(SPS)的方法制备了Bi2Te3样品。评估了铣削和SPS参数以及试样厚度的影响,以获得最佳的微观结构和热电性能。为了合成Bi2Te3,Bi和Te粉末在氩气气氛下在不锈钢小瓶中机械合金化,球粉重量比为15:1,持续时间不同。然后使用SPS在不同温度下烧结合成的粉末。采用x射线衍射(XRD)、扫描电子显微镜(SEM)和能谱仪(EDS)对Bi2Te3粉末和块体样品进行了表征。此外,通过紫外-可见光谱(UV-Vis)测量了带隙能量。此外,还测定了不同温度下的塞贝克电压和电导率。实验结果表明,通过将烧结温度从623K提高到673K,最大塞贝克系数从136μV/K提高到156μV/K。为了研究厚度的影响,试样在673K的最佳温度下烧结,厚度为1mm、1.5mm、2mm、3mm和4mm。结果表明,通过减小厚度,最大塞贝克系数从144μV/K增加到166μV/K,电导率从0.35×10(5)S/m增加到1.42×10(5)S/m,功率因数从0.76 mW/m-K-2增加到3.94 mW/m-K-2。

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