Co的加入对AlPdMn准晶体系热电性能的影响

A. Pope, P. Alboni, T. Tritt, R. Gagnon, S. Legault, J. Strom-Olsen
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引用次数: 3

摘要

部分由于缺乏周期结构,准晶体具有固有的低导热系数,约为1-3 W/mK。AlPdMn准晶体具有合理的电导率(500-800 (/spl Omega//spl middot/cm/sup -1/))和热电性能(80 /spl mu/V/K)。为了进一步提高热功率,并希望通过声子散射降低导热系数,在名义上的Al/sub 70/Pd/sub 10/Mn/sub 10准晶体中添加了第四个元素。x射线数据证实,添加额外的元素不会改变样品的准周期性。生长出Al/sub 70/Pd/sub 22.5/Mn/sub 7.5/准晶锭。随后的两批Al/sub 70/Pd/sub 22.5/5Mn/sub 7.5/生长,添加2% Co。在宽温度范围内测量每个样品的热功率,电导率和导热系数,并对结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of the addition of Co on the thermoelectric properties of the AlPdMn quasicrystalline system
Partially due to their lack of periodic structure, quasicrystals have inherently low thermal conductivity, on the order of 1-3 W/mK. AlPdMn quasicrystals exhibit reasonable values of electrical conductivity (500-800 (/spl Omega//spl middot/cm/sup -1/)) and thermopower (80 /spl mu/V/K) with respect to thermoelectrics. In an effort to further increase the thermopower and hopefully decrease the thermal conductivity via phonon scattering, a fourth element was added to the nominally Al/sub 70/Pd/sub 10/Mn/sub 10/ quasicrystal. X-ray data confirms that the addition of the additional element does not alter the quasiperiodicity of the sample. Several Al/sub 70/Pd/sub 22.5/Mn/sub 7.5/ quasicrystal ingots were grown. Two subsequent batches of Al/sub 70/Pd/sub 22.5/5Mn/sub 7.5/ were grown, adding up to 2% Co. Thermopower, electrical conductivity, and thermal conductivity were measured on each sample over a broad temperature range and the results are discussed.
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