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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Antimony-induced heterogeneous microstructure of Mg2Si0.6Sn0.4 thermoelectric materials and their thermoelectric properties
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Antimony-induced heterogeneous microstructure of Mg2Si0.6Sn0.4 thermoelectric materials and their thermoelectric properties

机译:Mg2Si0.6Sn0.4热电材料的锑诱导的非均相微结构及其热电性能

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摘要

In order to achieve enhancements in thermoelectric efficiency, microstructures that can form numerous interfaces have been investigated intensively for controlling the transport of charge carriers and heat-carrying phonons. In this paper, we report the heterogeneous microstructure of Mg2Si0.6Sn0.4 thermoelectric materials synthesized by a simple B2O3 encapsulation method and investigation of its influence on thermoelectric properties. The addition of Sb causes the evolution of a Sn-rich secondary phase and a heterogeneous microstructure consisting of Sn-deficient grains and a Sn-rich boundary phase, with coherent interfaces between them. The secondary phase induced by Sb doping suppressed the bipolar effect and reduced the thermal conductivity because of minority carrier blocking and phonon scattering at phase boundaries. However, high concentration of Sb in Sn-rich phase led to insufficient doping in Si-rich main phase and electron-hole compensation by Mg vacancies, resulting in decrease of the doping efficiency of Sb. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了实现热电效率的增强,已经研究了能够形成多个界面的微结构,用于控制电荷载体的传输和携带携带声子。本文通过简单的B2O3封装方法报告了通过简单的B2O3封装方法合成的Mg2Si0.6Sn0.4的异质微结构及其对热电性能的影响。 Sb的添加导致Sn的二次相的演变和由Sn缺陷颗粒和富含Sn的边界相组成的异质组织,它们之间具有相干界面。由Sb掺杂诱导的二次相抑制了双极效应并降低了导热率,因为在相边界处的少数载波阻断和声子散射。然而,在富含SN的相位的高浓度的Sb导致富含Si的主相和Mg空位的富含Si的主相和电子空穴补偿中的不充分掺杂,导致Sb的掺杂效率降低。 (c)2017年Elsevier B.V.保留所有权利。

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