材料科学
塞贝克系数
热电效应
无量纲量
热电发电机
功勋
热导率
热电材料
能量转换效率
工作(物理)
电阻率和电导率
热力学
复合材料
光电子学
物理
量子力学
作者
A. Muto,Daniel Kraemer,Qing Hao,Zhifeng Ren,Gang Chen
摘要
The maximum efficiency of a thermoelectric generator is determined by the material’s dimensionless figure of merit ZT. Real thermoelectric material properties are highly temperature dependent and are often measured individually using multiple measurement tools on different samples. As a result, reported ZT values have large uncertainties. In this work we present an experimental technique that eliminates some of these uncertainties. We measure the Seebeck coefficient, electrical conductivity, and thermal conductivity of a single element or leg, as well as the conversion efficiency, under a large temperature difference of 2–160 °C. The advantages of this technique include (1) the thermoelectric leg is mounted only once and all measurements are in the same direction and (2) the measured properties are corroborated by efficiency measurements. The directly measured power and efficiency are compared to the values calculated from the measured properties and agree within 0.4% and 2%, respectively. The realistic testing conditions of this technique make it ideal for material characterization prior to implementation in a real thermoelectric generator.
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