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首页> 外文期刊>Physical review >Electron and phonon scattering in the high-temperature thermoelectric La_3Te_(4-z)M_z (M=Sb,Bi)
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Electron and phonon scattering in the high-temperature thermoelectric La_3Te_(4-z)M_z (M=Sb,Bi)

机译:高温热电La_3Te_(4-z)M_z(M = Sb,Bi)中的电子和声子散射

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摘要

In this work, scattering mechanisms in the highly efficient thermoelectric material La_(3-x)Te+4 are investigatedrnby controlling the carrier concentration via anion substitution in the nominally vacancy-free compositions La_3Te_(4-z)Sb_z and La_3Te_(4-z)Bi_z. Through a comparison of the lattice thermal conductivity k_L in samples with and without Sb/Bi, this work reveals that La vacancies scatter phonons very efficiently and provide a -100% reduction in k_l at 575 K. The addition of Sb or Bi leads to a significant reduction in the band gap, which is observed in the temperature-dependent transport data as well as first-principles calculations. Despite this significant change to the band structure, the transport parameters of the conduction band are only slightly modified. Also, an increase in the Hall mobility is observed at high T and z, which is caused by a reduction in either the La-vacancy concentration or the electron's effective mass. A slight increase in thermoelectric efficiency is observed for nominal La_3Te_(3.35)Sb_(0.65) at high T. Thus, the net result is a system with large thermoelectric efficiency and a tunable band gap, thereby enabling a clear example to examine the effect of band gap on thermoelectric properties.
机译:在这项工作中,通过在名义上无空位的成分La_3Te_(4-z)Sb_z和La_3Te_(4-z Bi_z。通过比较有和没有Sb / Bi的样品的晶格热导率k_L,这项工作表明La空位非常有效地散射了声子,并在575 K时k_l降低了-100%。Sb或Bi的添加导致带隙的显着减小,这在依赖温度的传输数据以及第一性原理计算中都可以观察到。尽管能带结构发生了显着变化,但导带的传输参数仅稍作修改。同样,在高T和z处观察到霍尔迁移率的增加,这是由于La空位浓度或电子有效质量的降低引起的。在高T下观察到标称La_3Te_(3.35)Sb_(0.65)的热电效率略有增加。因此,最终结果是系统具有高的热电效率和可调的带隙,从而使一个清晰的例子可以研究带隙对热电性能的影响。

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