High Thermoelectric Performance in PbTe Due to Large Nanoscale Ag2 Te Precipitates and La Doping

被引:488
作者
Pei, Yanzhong [1 ]
Lensch-Falk, Jessica [2 ]
Toberer, Eric S. [1 ]
Medlin, Douglas L. [2 ]
Snyder, G. Jeffrey [1 ]
机构
[1] CALTECH, Pasadena, CA 91125 USA
[2] Sandia Natl Labs, Dept Mat Phys, Livermore, CA 94551 USA
基金
美国能源部;
关键词
LATTICE THERMAL-CONDUCTIVITY; LEAD-TELLURIDE; NEUERE UNTERSUCHUNGEN; SOLID-SOLUTIONS; ALLOYS; FIGURE; MERIT; TEMPERATURE; INTERFACES; EFFICIENCY;
D O I
10.1002/adfm.201000878
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Thermoelectrics are being rapidly developed for waste heat recovery applications, particularly in automobiles, to reduce carbon emissions. PbTe-based materials with small (<20 nm) nanoscale features have been previously shown to have high thermoelectric figure-of-merit, zT, largely arising from low lattice thermal conductivity particularly at low temperatures. Separating the various phonon scattering mechanisms and the electronic contribution to the thermal conductivity is a serious challenge to understanding, and further optimizing, these nanocomposites. Here we show that relatively large nanometer-scale (50-200 nm) Ag2Te precipitates in PbTe can be controlled according to the equilibrium phase diagram and these materials show intrinsic semiconductor behavior with high electrical resistivity, enabling direct measurement of the phonon thermal conductivity. This study provides direct evidence that even large nanometer-scale microstructures reduce thermal conductivity below that of a macro-scale composite of saturated alloys with Kapitza-type interfacial thermal resistance at the same overall composition. Carrier concentration control is achieved with lanthanum doping, enabling independent control of the electronic properties and microstructure. These materials exhibit lattice thermal conductivity which approaches the theoretical minimum above similar to 650 K, even lower than that found with small nanoparticles. Optimally La-doped n-type PbTe-Ag-2 Te nanocomposites exhibit zT > 1.5 at 775 K.
引用
收藏
页码:241 / 249
页数:9
相关论文
共 54 条
[1]   LATTICE THERMAL CONDUCTIVITY OF DISORDERED SEMICONDUCTOR ALLOYS AT HIGH TEMPERATURES [J].
ABELES, B .
PHYSICAL REVIEW, 1963, 131 (05) :1906-&
[2]   Energy and temperature dependence of relaxation time and Wiedemann-Franz law on PbTe [J].
Ahmad, Salameh ;
Mahanti, S. D. .
PHYSICAL REVIEW B, 2010, 81 (16)
[3]   Improvement in the Thermoelectric Figure of Merit by La/Ag Cosubstitution in PbTe [J].
Ahn, Kyunghan ;
Li, Changpeng ;
Uher, Ctirad ;
Kanatzidis, Mercouri G. .
CHEMISTRY OF MATERIALS, 2009, 21 (07) :1361-1367
[4]  
AKIMOV BA, 1991, SOV PHYS SEMICOND+, V25, P208
[5]  
ALEKSEEV.GT, 1971, SOV PHYS SEMICOND+, V4, P1122
[6]   Donorlike behavior of rare-earth impurities in PbTe [J].
Alekseeva, GT ;
Vedernikov, MV ;
Gurieva, EA ;
Konstantinov, PP ;
Prokof'eva, LV ;
Ravich, YI .
SEMICONDUCTORS, 1998, 32 (07) :716-719
[7]   Electrical and Thermoelectric Properties of p-Ag2Te in the β Phase [J].
Aliev, FF .
SEMICONDUCTORS, 2003, 37 (09) :1057-1060
[8]   Nanostructuring and high thermoelectric efficiency in p-type Ag(Pb1-ySny)mSbTe2+m [J].
Androulakis, John ;
Hsu, Kuei Fang ;
Pcionek, Robert ;
Kong, Huijun ;
Uher, Ctirad ;
DAngelo, Jonathan J. ;
Downey, Adam ;
Hogan, Tim ;
Kanatzidis, Mercouri G. .
ADVANCED MATERIALS, 2006, 18 (09) :1170-+
[9]   Spinodal decomposition and nucleation and growth as a means to bulk nanostructured thermoelectrics:: Enhanced performance in Pb1-xSnxTe-PbS [J].
Androulakis, John ;
Lin, Chia-Her ;
Kong, Hun-Jin ;
Uher, Ctirad ;
Wu, Chun-I ;
Hogan, Timothy ;
Cook, Bruce A. ;
Caillat, Thierry ;
Paraskevopoulos, Konstantinos M. ;
Kanatzidis, Mercouri G. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (31) :9780-9788
[10]  
ASM Alloy Phase Diagrams Center, 1978, FSD