High Performance Oxides-Based Thermoelectric Materials

被引:0
|
作者
Guangkun Ren
Jinle Lan
Chengcheng Zeng
Yaochun Liu
Bin Zhan
Sajid Butt
Yuan-Hua Lin
Ce-Wen Nan
机构
[1] Tsinghua University,State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering
来源
JOM | 2015年 / 67卷
关键词
In2O3; Spark Plasma Sinter; Bi2Te3; Seebeck Coefficient; Thermoelectric Material;
D O I
暂无
中图分类号
学科分类号
摘要
Thermoelectric materials have attracted much attention due to their applications in waste-heat recovery, power generation, and solid state cooling. In comparison with thermoelectric alloys, oxide semiconductors, which are thermally and chemically stable in air at high temperature, are regarded as the candidates for high-temperature thermoelectric applications. However, their figure-of-merit ZT value has remained low, around 0.1–0.4 for more than 20 years. The poor performance in oxides is ascribed to the low electrical conductivity and high thermal conductivity. Since the electrical transport properties in these thermoelectric oxides are strongly correlated, it is difficult to improve both the thermoelectric power and electrical conductivity simultaneously by conventional methods. This review summarizes recent progresses on high-performance oxide-based thermoelectric bulk-materials including n-type ZnO, SrTiO3, and In2O3, and p-type Ca3Co4O9, BiCuSeO, and NiO, enhanced by heavy-element doping, band engineering and nanostructuring.
引用
收藏
页码:211 / 221
页数:10
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