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The Effect of the Heavy-Hole Band on the Thermoelectric Figure-of-Merit of Heavily Doped p-Type Lead Telluride

机译:重孔带对重掺杂P型引导碲化物的热电象征的影响

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摘要

The thermoelectric properties of heavily doped p-type PbTe have been theoretically studied in the temperature range from 300 to 900 K. The calculations are based on a three-band model of the PbTe electron energy spectrum taking into account the transport of electrons and light holes in the L-extrema and heavy holes in the I -extrema pound. The thermoelectric quantities turned out to be very sensitive to the parameters of the heavy-hole band. The best agreement with the experiment is reached at m (hh) = 5m (0) and E (gI ) pound = 0.5 eV, where all calculated thermoelectric quantities agree well with the available experimental data within the entire interval from 300 to 900 K. The calculation confirms a significant increase of the value of the thermoelectric figure-of-merit to ZT = 1.2 that has been recently observed experimentally in heavily doped p-PbTe samples. The maximum of ZT corresponds to the temperature at which the band edges of light and heavy holes coincide in energy so that the steepest singularity in the density of states in the valence band is formed.
机译:大理之常掺杂P型PBTE的热电性质已经在300至900k的温度范围内研究。计算基于考虑到电子和灯孔的传输的PBTE电子能谱的三带模型在L-extrema和I-Extrema英镑的厚孔中。结果热电量对重孔带的参数非常敏感。在M(HH)= 5M(0)和E(GI)= 0.5eV中达到了与实验的最佳协议,其中所有计算出的热电量都与300到900 K的整个间隔内的可用实验数据很好。该计算证实了最近在重掺杂的P-PBTE样品中实验观察到的Zt = 1.2的热电数字的值的显着增加。 ZT的最大值对应于光和重孔的带状边缘在能量中的温度,使得形成价带中的状态密度的最奇异性。

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