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Densification, microstructure, and thermoelectric properties of AZO/SrTiO3 composites

机译:AZO/SrTiO3复合材料的致密化、微观结构和热电性能

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摘要

Al-doped ZnO (AZO) has emerged as a potential high-temperature thermoelectric material with an appropriate Seebeck coefficient and high thermal stability, and hence is considered as a promising material for power generation applications. Herein, we report the fabrication of AZO/SrTiO3 composites with improved thermo-electric performance. The densification, microstructure, and thermoelectric properties of the AZO/SrTiO3 composites were investigated. The significant increase in the relative density of AZO from 89.1 to 98.0 after the addition of SrTiO3 indicates that SrTiO3 promoted the densification of the composites. Furthermore, the electrical conductivity of AZO increased after the addition of SrTiO3 , which can mainly be attributed to its enhanced relative density. The AZO/SrTiO3 composite with 2.0 wt SrTiO3 showed the highest power factor at 1000 K because of its highest electrical conductivity. In addition, the composite showed the highest ZT value, which was 1.8 times higher than that of pure AZO.
机译:Al掺杂ZnO(AZO)是一种潜在的高温热电材料,具有适当的塞贝克系数和高热稳定性,被认为是一种很有前途的发电材料。在此,我们报道了具有改进的热电性能的AZO/SrTiO3复合材料的制备。研究了AZO/SrTiO3复合材料的致密化、微观结构和热电性能。SrTiO3添加后,偶氮的相对密度从89.1%显著提高到98.0%,表明SrTiO3促进了复合材料的致密化。此外,添加SrTiO3后,AZO的电导率增加,这主要归因于其相对密度的增强。SrTiO3含量为2.0 wt%的AZO/SrTiO3复合材料具有最高的电导率,在1000 K时具有最高的功率因数。此外,该复合材料的ZT值最高,是纯AZO的1.8倍。

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