Institute of Physical Chemistry, University of Vienna, Wien, Austria.
J Phys Condens Matter. 2011 Jul 13;23(27):275601. doi: 10.1088/0953-8984/23/27/275601. Epub 2011 Jun 17.
High temperature thermoelectric (TE) properties for triple-filled skutterudites (Sr(x)Ba(x)Yb₁₋₂x)(y)Co₄Sb₁₂ were investigated for alloy compositions in two sections of the system: (a) for x = 0.25 with a filling fraction y ranging from 0.1 to 0.25 and (b) for 0 < x < 0.5 and y = 0.11 + 0.259x. The representation of the figure of merit, ZT, as a function of skutterudite composition, defined the compositional range (0.25 < x < 0.4; 0.18 < y < 0.24) with ZT over 1.4 at 800 K. It was shown that an enhanced TE performance for these triple-filled skutterudites is caused by low electrical resistivities and low lattice thermal conductivities, as well as by a fine tuning of the chemical composition. Low temperature measurements for the samples with the highest ZT values showed that even a small change of the filler ratios changes the contribution of scattering effects, the carrier concentration and the mobility.
高温热电 (TE) 性能的三重填充 skutterudites (Sr(x)Ba(x)Yb₁₋₂x)(y)Co₄Sb₁₂ 研究了合金组成在两个系统的部分: (a) 对于 x = 0.25 与填充分数 y 范围从 0.1 到 0.25 和 (b) 为 0 < x < 0.5 和 y = 0.11 + 0.259x。的优值, ZT 的表现作为 skutterudite 组成的函数, 定义了组成范围 (0.25 < x < 0.4; 0.18 < y < 0.24) ZT 超过 1.4 在 800 K。结果表明, 这些三重填充 skutterudites 的 TE 性能增强是由低电阻率和低热导率以及化学成分的精细调整引起的。具有最高 ZT 值的样品的低温测量表明, 即使填充比的微小变化也会改变散射效应、载流子浓度和迁移率的贡献。