首页> 外文OA文献 >Experimental determination of the Lorenz number in Cu[subscript 0.01]Bi[subscript 2]Te[subscript 2.7]Se[subscript 0.3] and Bi[subscript 0.88]Sb[subscript 0.12]
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Experimental determination of the Lorenz number in Cu[subscript 0.01]Bi[subscript 2]Te[subscript 2.7]Se[subscript 0.3] and Bi[subscript 0.88]Sb[subscript 0.12]

机译:Cu [下标0.01] Bi [下标2] Te [下标2.7] se [下标0.3]和Bi [下标0.88] sb [下标0.12]中洛伦兹数的实验测定

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摘要

Nanostructuring has been shown to be an effective approach to reduce the lattice thermal conductivity and improve the thermoelectric figure of merit. Because the experimentally measured thermal conductivity includes contributions from both carriers and phonons, separating out the phonon contribution has been difficult and is mostly based on estimating the electronic contributions using the Wiedemann-Franz law. In this paper, an experimental method to directly measure electronic contributions to the thermal conductivity is presented and applied to Cu[subscript 0.01]Bi[subscript 2]Te[subscript 2.7]Se[subscript 0.3] and Bi[subscript 0.88]Sb[subscript 0.12], [Cu[subscript 0.01]Bi[subscript 2]Te[subscript 2.7]Se[subscript 0.3] and Bi[subscript 0.88]Sb[subscript 0.12]][subscript 0.98]Ni[subscript 0.02], and Bi[subscript 0.88]Sb[subscript 0.12]. By measuring the thermal conductivity under magnetic field, electronic contributions to thermal conductivity can be extracted, leading to knowledge of the Lorenz number in thermoelectric materials.
机译:纳米结构已被证明是降低晶格热导率并改善热电性能的有效方法。由于实验测量的热导率包括载流子和声子的贡献,因此很难分离出声子的贡献,并且主要基于使用Wiedemann-Franz定律估算电子贡献。本文提出了一种直接测量电子对热导率的贡献的实验方法,并将其应用于Cu [下标0.01] Bi [下标2] Te [下标2.7] Se [下标0.3]和Bi [下标0.88] Sb [下标0.12],[Cu [下标0.01] Bi [下标2] Te [下标2.7] Se [下标0.3]和Bi [下标0.88] Sb [下标0.12]] [下标0.98] Ni [下标0.02]和Bi [下标0.88] Sb [下标0.12]。通过测量磁场下的热导率,可以提取电子对热导率的贡献,从而了解热电材料中的洛伦兹数。

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