Seebeck coefficient of Bi-Sb samples grown by mechanical alloying

J.E. Rodriguez, D. Cadavid
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Abstract

We report Seebeck coefficient, S(T) and electrical resistivity, /spl rho/(T) measurements of Bi/sub 0.88/Sb/sub 0.12/ compounds prepared by mechanical alloying (MA). The behavior of the Seebeck coefficient and electrical resistivity were studied as a function of temperature and the milling time (MT). The milling process was carried out at room temperature and took different values from 0 hours to 45 hours. The Seebeck coefficient was measured by using the differential method in the temperature range between 77 K and 300 K. S(T) is negative in whole temperature range measured and it changes from -60 /spl mu/V/K for the samples with low milling time up to reach values close to -160 /spl mu/V/K in the samples processed through 45 hours. The thermoelectric power factor, PF increases with the temperature and the milling time, it reaches values close to 5 /spl mu/W/K/sup 2/cm. This result allows us to consider the use of this simple and inexpensive method to grow this kind of thermoelectric materials.
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机械合金化生长Bi-Sb试样的塞贝克系数
本文报道了机械合金化(MA)制备的Bi/sub 0.88/Sb/sub 0.12/化合物的塞贝克系数S(T)和电阻率/spl rho/(T)的测量结果。研究了塞贝克系数和电阻率随温度和铣削时间的变化规律。铣削过程在室温下进行,时间从0小时到45小时不等。用微分法在77 ~ 300 K的温度范围内测量了塞贝克系数。S(T)在测量的整个温度范围内为负,在加工时间较短的样品中,S(T)从-60 /spl mu/V/K变化到加工45小时的样品中接近-160 /spl mu/V/K。热电功率因数PF随温度和磨矿时间的增加而增大,其值接近5 /spl mu/W/K/sup 2/cm。这一结果使我们可以考虑使用这种简单而廉价的方法来生长这种热电材料。
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