Dong Yongkwan, Eckert Brian, Wang Hsin, Zeng Xiaoyu, Tritt Terry M, Nolas George S
Department of Physics, University of South Florida, Tampa, FL 33620, USA.
Dalton Trans. 2015 May 21;44(19):9014-9. doi: 10.1039/c5dt00910c.
Quaternary chalcogenides, particular compounds with the stannite structure-type, are of interest for thermoelectrics applications however tellurium-containing compositions have not been extensively investigated. We report on the synthesis and high temperature thermoelectric properties of p-type stannites Cu2.2Zn0.8SnSe4-xTex (x = 0.1, 0.2, 0.3, and 0.4). The compositions for each specimen were confirmed with a combination of Rietveld refinement and elemental analysis. Hall measurements indicate that holes are the dominant charge carriers in these materials. The electrical resistivity shows little temperature dependence up to 500 K and then increases with increasing temperature. The thermal conductivity decreases with increasing temperature with no indication of increase at higher temperatures suggesting a minimal bipolar diffusion effect in the thermal conductivity although these materials possess relatively small band-gaps as compared to that of other stannite compositions. A maximum ZT value of 0.56 was obtained at 700 K for Cu2.2Zn0.8SnSe3.7Te0.3 due to a relatively high Seebeck coefficient and low thermal conductivity.
四元硫族化合物,特别是具有黄锡矿结构类型的化合物,在热电应用中备受关注,然而含碲成分尚未得到广泛研究。我们报道了p型黄锡矿Cu2.2Zn0.8SnSe4-xTex(x = 0.1、0.2、0.3和0.4)的合成及高温热电性能。通过Rietveld精修和元素分析相结合的方法确定了每个样品的成分。霍尔测量表明,空穴是这些材料中的主要载流子。在高达500 K的温度范围内,电阻率几乎不随温度变化,然后随温度升高而增加。热导率随温度升高而降低,在较高温度下没有增加的迹象,这表明尽管与其他黄锡矿成分相比,这些材料的带隙相对较小,但在热导率中双极扩散效应最小。由于相对较高的塞贝克系数和较低的热导率,Cu2.2Zn0.8SnSe3.7Te0.3在700 K时获得了0.56的最大ZT值。