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通过简单的电弧熔炼工艺制备的具有优化组成的纳米结构(Bi,Sb)Te 的优异性能。

Enhanced figure of merit in nanostructured (Bi,Sb)Te with optimized composition, prepared by a straightforward arc-melting procedure.

机构信息

Instituto de Ciencia de Materiales de Madrid, C.S.I.C., Cantoblanco, E-28049, Madrid, Spain.

Sfax University, National School of Engineers, B. P., W 3038, Sfax, Tunisia.

出版信息

Sci Rep. 2017 Jul 24;7(1):6277. doi: 10.1038/s41598-017-05428-4.

Abstract

Sb-doped BiTe is known since the 1950s as the best thermoelectric material for near-room temperature operation. Improvements in material performance are expected from nanostructuring procedures. We present a straightforward and fast method to synthesize already nanostructured pellets that show an enhanced ZT due to a remarkably low thermal conductivity and unusually high Seebeck coefficient for a nominal composition optimized for arc-melting: BiSbTe. We provide a detailed structural analysis of the BiSbTe series (0 ≤ x ≤ 2) based on neutron powder diffraction as a function of composition and temperature that reveals the important role played by atomic vibrations. Arc-melting produces layered platelets with less than 50 nm-thick sheets. The low thermal conductivity is attributed to the phonon scattering at the grain boundaries of the nanosheets. This is a fast and cost-effective production method of highly efficient thermoelectric materials.

摘要

自 20 世纪 50 年代以来,Sb 掺杂 BiTe 就被认为是在近室温下运行的最佳热电材料。通过纳米结构化工艺有望提高材料性能。我们提出了一种简单快速的方法来合成已经纳米结构化的颗粒,由于热导率显著降低和 Seebeck 系数异常高,对于名义成分优化的电弧熔炼 BiSbTe 来说,其 ZT 值得到了提高。我们提供了基于中子粉末衍射的 BiSbTe 系列(0 ≤ x ≤ 2)的详细结构分析,作为成分和温度的函数,揭示了原子振动所起的重要作用。电弧熔炼会产生层状薄片,其厚度小于 50nm。低热导率归因于纳米片晶界处的声子散射。这是一种高效热电材料的快速且具有成本效益的生产方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8213/5524901/074516b175e9/41598_2017_5428_Fig1_HTML.jpg

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