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Enhanced thermoelectric cooling properties of Bi2Te3-xSex alloys fabricated by combining casting, milling and spark plasma sintering

机译:通过组合铸造,铣削和火花等离子体烧结制造的Bi2Te3-XSex合金的热电冷却性能增强

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摘要

Bi2Te3-xSex alloys are extensively used for thermoelectric cooling around room temperature, but, previous studies have reported peak thermoelectric efficiency of the material at higher temperature around 450 K. This study presents the casting followed by high energy ball milling and spark plasma sintering as a thriving methodology to produce efficient and well-built Bi2Te3-xSex material for the thermoelectric cooling around room temperature. In addition, changes in electrical and thermal transport properties brought up by amount of Se in the Bi2Te3-xSex material for this methodology are measured and discussed. Although Seebeck coefficient and electrical conductivity showed irregular trend, power factor, thermal conductivity and figure of merit ZT gradually decreased with the increase in amount of Se. A maximum ZT value of 0.875 at 323 K was obtained for x = 0.15 sample owing to its higher power factor. This value is 17% and 38% greater than for x = 0.3 and x = 0.6 samples respectively. At 323 K, herein reported ZT value of 0.875 is higher than the state of art n-type Bi2Te3 based thermoelectric materials produced by the time consuming and expensive methodologies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Bi2te3-Xsex合金广泛用于室温的热电冷却,但是,先前的研究报告了在450k左右的较高温度下的材料峰值热电效率。该研究呈现出高能球铣削和火花等离子体烧结作为铸造。繁荣方法生产高效且良好的BI2Te3-XSEx材料,用于在室温下热电冷却。此外,测量并讨论了该方法的Bi2Te3-XSex材料中由SE的量的电和热传输性能的变化。虽然塞贝克系数和电导率显示出不规则的趋势,功率因数,功率导热性和优异ZT的数字随着SE的量增加而逐渐降低。由于其较高功率因数,获得了X = 0.15样品的最大ZT值为0.875。该值分别比x = 0.3和x = 0.6样本大17%和38%。在323 k处,这里报道的ZT值为0.875高于通过耗时和昂贵的方法产生的基于现有技术的N型Bi2te3的热电材料状态。 (c)2016 Elsevier Ltd.保留所有权利。

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