首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Design of half-heusler thermoelectric compound TiFe0.5Ni0.5Sb with special quasi-random structure using 18-electron rule
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Design of half-heusler thermoelectric compound TiFe0.5Ni0.5Sb with special quasi-random structure using 18-electron rule

机译:用18型电子规则设计半风热壶热电复合TIEE0.5NI0.5SB的特殊准随机结构

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摘要

The double half-Heusler compound TiFe0.5Ni0.5Sb with special quasi-random structure (SQS) has been modeled by using 18-electron rule, which can simulate the inevitable atomic occupation disorder between two sublattices. We studied the electronic structure and thermoelectric (TE) properties of this compound based on first-principle calculations and semi-classical Boltzmann transport theory. The calculated band structure indicates that this compound belongs to a nonmagnetic indirect band gap semiconductor with a band gap of 0.45 eV. The lattice thermal conductivity kappa(l) at room temperature is 11.24 WK(-1 )m(-1), which was lower than 18.7 WK-1 m(-1) for the 18-electron TiCoSb, and decreases as the temperature increased. The reason is that the lattice vibration is enhanced while thermal conductivity is suppressed when the temperature rises. The dimensionless figure of merit ZT of p-type TiFe0.5Ni0.5Sb at 1390 K is evaluated to be 0.35, which is higher than 0.1 for its parent compound 17-electron TiFeSb. The theoretical prediction for TiFe0.5Ni0.5Sb can simulate corresponding experimental results because of the use of SQS and will increase the experimental research of other disordered alloys using 18-electron rule toward designing and improving TE performance. (C) 2020 Elsevier B.V. All rights reserved.
机译:双半海斯勒化合物TiFe0。5Ni0。用18电子规则模拟了具有特殊准随机结构(SQS)的5Sb,它可以模拟两个亚晶格之间不可避免的原子占据无序。基于第一性原理计算和半经典玻尔兹曼输运理论,我们研究了该化合物的电子结构和热电性质。计算的能带结构表明,该化合物属于非磁性间接带隙半导体,带隙为0.45ev。室温下的晶格热导率kappa(l)为11.24 WK(-1)m(-1),低于18电子TiCoSb的18.7 WK-1 m(-1),并随温度升高而降低。其原因是随着温度的升高,晶格振动增强,而导热系数被抑制。p型TiFe0的无量纲优值ZT。5Ni0。在1390 K下,5Sb的估算值为0.35,高于其母体化合物17电子TiFeB的0.1。TiFe0的理论预测。5Ni0。由于使用了SQS,5Sb可以模拟相应的实验结果,并将增加使用18电子规则对其他无序合金的实验研究,以设计和改善TE性能。(C) 2020爱思唯尔B.V.版权所有。

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