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成分调整对MgBi基热电材料热电性能的影响

Effect of Composition Adjustment on the Thermoelectric Properties of MgBi-Based Thermoelectric Materials.

作者信息

Yang Jianbao, Wang Zhibin, Zhao Hong, Luo Xinyu, Han Wenyuan, Wang Hao, Meng Linghao, She Xinqi, Quan Anlong, Peng Yixin, Cai Guoji, Liu Yi, Tang Yong, Feng Bo

机构信息

Institute of Engineering and Technology, Hubei University of Science and Technology, Xianning 437100, China.

School of Mechanical and Electrical Engineering, Wuhan Donghu University, Wuhan 430070, China.

出版信息

Micromachines (Basel). 2023 Sep 27;14(10):1844. doi: 10.3390/mi14101844.

Abstract

Thermoelectric materials are widely used in refrigeration chips, thermal power generation, catalysis and other fields. MgBi-based thermoelectric material is one of the most promising thermoelectric materials. Herein, the MgBi-based samples were prepared by high temperature synthesis, and the influence of Mg/Sb content on the electrical transport properties and semi-conductivity/semi-metallicity of the materials has been studied. The results indicate that the efficiency of introducing electrons from excess Mg prepared by high temperature synthesis is lower than that introduced by ball milling, due to the high vapor pressure of Mg. The doping of Sb/Te at the Bi site would make it easier for the material to change from p-type conduction to n-type conduction. With the increase in Mg content, the semi-conductivity of the material becomes weaker, the semi-metallicity becomes stronger, and the corresponding conductivity increases. With the increase in Sb content, the samples exhibit the opposite changes. The highest power factor of ~1.98 mWmK is obtained from the MgBiSbTe sample.

摘要

热电材料广泛应用于制冷芯片、热电发电、催化等领域。镁铋基热电材料是最具潜力的热电材料之一。在此,通过高温合成制备了镁铋基样品,并研究了镁/锑含量对材料电输运性能和半导体性/半金属性的影响。结果表明,由于镁的高蒸气压,高温合成制备的过量镁引入电子的效率低于球磨法引入电子的效率。在铋位点掺杂锑/碲会使材料更容易从p型传导转变为n型传导。随着镁含量的增加,材料的半导体性变弱,半金属性变强,相应的电导率增加。随着锑含量的增加,样品呈现相反的变化。MgBiSbTe样品获得了约1.98 mWmK的最高功率因子。

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