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首页> 外文期刊>APL Materials >Composition-dependent charge transport and temperature-dependent density of state effective mass interpreted by temperature-normalized Pisarenko plot in Bi2?xSbxTe3 compounds
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Composition-dependent charge transport and temperature-dependent density of state effective mass interpreted by temperature-normalized Pisarenko plot in Bi2?xSbxTe3 compounds

机译:由BI2中的温度标准化的Pisarenko图解释的组成依赖性电荷传输和温度相关的状态有效质量密度?Xsbxte3化合物

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摘要

Composition-dependent charge transport and temperature-dependent density of state effective mass-dependent Seebeck coefficient were investigated in Bisub2? x /subSbsub x /subTesub3/sub ( x = 1.56-1.68) compounds. The compounds were prepared by the spark plasma sintering of high-energy ball-milled powder. High-temperature Hall measurements revealed that the charge transport in the compounds was governed dominantly by phonon scattering and influenced additionally by alloy scattering depending on the amount of Sb. Contrary effects of Sb content on the Seebeck coefficient were discussed in terms of carrier concentration and density of state effective mass, and it was elucidated by temperature-normalized Pisarenko plot for the first time.
机译:在Bi 2中研究了组成依赖性电荷传输和状态有效质量依赖性塞贝克系数的依赖性密度? X Sb x te 3 (x = 1.56-1.68)化合物。通过高能球磨粉的火花等离子体烧结制备该化合物。高温霍尔测量显示,化合物中的电荷传输通过声子散射散射的主导地理,并通过合金散射根据SB的量而受到影响。根据载流子浓度和状态有效质量的密度讨论了Sb含量对塞贝克系数的相反效应,并且首次通过温度归一化的Pisarenko图阐明它。

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