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Impedance spectroscopy for assessment of thermoelectric module properties under a practical operating temperature

机译:阻抗谱用于评估实际工作温度下的热电模块性能

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Impedance spectroscopy has recently received considerable attention in terms of thermoelectric module characterization. However, to date, no study has been conducted on the high-temperature measurement of the module using impedance spectroscopy. In this paper, a systematic study on the Bi2Te3-based thermoelectric module up to 150 degrees C is reported. Evaluation results indicated that impedance spectroscopy could be used for characterizing the thermoelectric module in a practical operation temperature range. The impedance spectroscopy data of the module changed with the increased temperature on account of the change in the characteristics of the thermoelectric legs. Analysis of the impedance spectroscopy data enabled determination of the thermoelectric module figure of merit, while enabling extraction of three key parameters-the Seebeck coefficient, thermal conductivity, and electrical conductivity-by employing a one-dimensional heat equation. The results indicated that, while the thermal conductivity increased with temperature, the electrical conductivity decreased with increasing temperature. The Seebeck coefficient increased with temperature up to 100 degrees C and tended to be saturated. The module figure of merit was 0.82 and peaked at 75 degrees C. The results obtained in this study can contribute to the rapid evaluation of thermoelectric modules for exploiting various novel thermoelectric materials, metallization layers, electrodes, and insulating plates. (C) 2017 Published by Elsevier Ltd.
机译:在热电模块表征方面,阻抗谱最近受到了相当大的关注。然而,迄今为止,尚未进行使用阻抗光谱法对模块的高温测量的研究。在本文中,系统研究了基于Bi2Te3的热电模块,温度高达150摄氏度。评价结果表明,在实际工作温度范围内,阻抗谱可用于表征热电模块。由于热电腿的特性变化,模块的阻抗光谱数据随温度升高而变化。阻抗谱数据的分析使得能够确定热电模块的品质因数,同时能够通过采用一维热方程来提取三个关键参数-塞贝克系数,热导率和电导率。结果表明,虽然热导率随温度升高而升高,但电导率随温度升高而降低。塞贝克系数随温度升高到100摄氏度而增加,并且趋于饱和。模块的品质因数为0.82,在75摄氏度达到峰值。本研究中获得的结果可有助于快速评估热电模块,以开发各种新型热电材料,金属化层,电极和绝缘板。 (C)2017由Elsevier Ltd.发布

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