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Significant band engineering effect of YbTe for high performance thermoelectric PbTe

机译:YbTe对高性能热电PbTe的重要能带工程效果

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Alloying, to minimize the energy offset between the two valence bands of PbTe, has been well demonstrated to yield thermoelectric performance enhancements. Distinct from the currently known alloying species such as MnTe, MgTe, CdTe, PbSe and PbS, where the high performance partially comes from the alloy phonon scattering as well as because of the high alloying content of >= 3%, YbTe, even with a concentration as low as 1%, is found here to have an extraordinary role in engineering the band structure to achieve a thermoelectric figure of merit, zT, approaching 1.8, without relying on strong phonon scattering. This work demonstrates new insight into the further improvement of thermoelectric materials, because this strategy leaves the feasibility of lattice thermal conductivity reduction nearly unaffected, which can be obtained by other well-demonstrated approaches such as nanostructuring.
机译:合金化可以使PbTe的两个价带之间的能量偏移最小,已被证明可以提高热电性能。与目前已知的合金物种(例如MnTe,MgTe,CdTe,PbSe和PbS)不同,其中高性能部分来自合金声子散射,而且由于> b> 3%时,YbTe的合金含量很高,浓度低至1%的化合物在此过程中对带结构的工程化起着非凡的作用,使热电性能因数zT接近1.8,而无需依赖强声子散射。这项工作证明了对热电材料进一步改进的新见解,因为这种策略使晶格热导率降低的可行性几乎不受影响,而这可以通过其他经过充分证明的方法(例如纳米结构)来获得。

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