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Correction of the Electrical and Thermal Extrinsic Effects in Thermoelectric Measurements by the Harman Method

机译:用HARMAN方法校正电气和热外部效应的热电测量

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Although the Harman method evaluates the thermoelectric figure-of-merit in a rapid and simple fashion, the accuracy of this method is affected by several electrical and thermal extrinsic factors that have not been thoroughly investigated. Here, we study the relevant extrinsic effects and a correction scheme for them. A finite element model simulates the electrical potential and temperature fields of a sample, and enables the detailed analysis of electrical and thermal transport. The model predicts that the measurement strongly depends on the materials, sample geometries, and contact resistance of the electrodes. To verify the model, we measure the thermoelectric properties of Bi2-Te3 based alloys with systematically varied sample geometries and either with a point or a surface current source. By comparing the model and experimental data, we understand how the measurement conditions determine the extrinsic effects, and, furthermore, able to extract the intrinsic thermoelectric properties. A correction scheme is proposed to eliminate the associated extrinsic effects for an accurate evaluation. This work will help the Harman method be more consistent and accurate and contribute to the development of thermoelectric materials.
机译:虽然HARMAN方法以快速简便的方式评估热电数字,但这种方法的准确性受到尚未彻底调查的几种电气和热外部因素的影响。在这里,我们研究了他们的相关外在效果和惩戒方案。有限元模型模拟样品的电势和温度场,并实现电气和热传输的详细分析。该模型预测测量强烈取决于材料,样品几何形状和电极的接触电阻。为了验证模型,我们测量基于Bi2-Te3的合金的热电性能,具有系统变化的样品几何形状,并且具有点或表面电流源。通过比较模型和实验数据,我们了解测量条件如何确定外部效果,而且还能够提取内在热电性能。提出了一种校正方案来消除对准确评估的相关外在效果。这项工作将有助于Harman方法更加一致,准确,有助于发育热电材料。

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