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Thermoelectric materials PbTe were synthesized by high pressure method. The microstructure and temperature dependence of thermoelectric properties were studied. Some second phases with nano-structure were found in the high pressure synthesized samples. Compared with that of PbTe prepared at an atmospheric pressure, the samples prepared by high pressure method had smaller grain sizes, lower resistivity and lower phonon thermal conductivity. The maximum figure of merit, Z reached 8.86 × 104 K1 for the sample prepared at 4 GPa. This value was about twice times higher than that of the sample prepared at ambient pressure and it matched to that of highly doped PbTe.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
152--156
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
- Institute of Materials Science and Engineering, Cultivating Base for Key Laboratory of Environment-friendly Inorganic Materials in University of Henan Province, Henan Polytechnic University, Jiaozuo 454000, China
autor
- Institute of Materials Science and Engineering, Cultivating Base for Key Laboratory of Environment-friendly Inorganic Materials in University of Henan Province, Henan Polytechnic University, Jiaozuo 454000, China
autor
- Shanghai Entry-Exit Inspection & Quarantine Bureau, Shanghai 200135, China
autor
- Department of Physics, Mudanjiang Normal College, Heilongjiang Province Key laboratory of New Carbon-base Functional and Superhard Material, Mudanjiang 157011, China
autor
- Institute of Materials Science and Engineering, Cultivating Base for Key Laboratory of Environment-friendly Inorganic Materials in University of Henan Province, Henan Polytechnic University, Jiaozuo 454000, Chin
autor
- Institute of Materials Science and Engineering, Cultivating Base for Key Laboratory of Environment-friendly Inorganic Materials in University of Henan Province, Henan Polytechnic University, Jiaozuo 454000, China
autor
- National Lab of Superhard Materials, Jilin University, Changchun 130012, China
autor
- National Lab of Superhard Materials, Jilin University, Changchun 130012, China
Bibliografia
- [1] DISALVO F., Science, 285 (5428) (1999), 703.
- [2] GOLDSMID H., Electronic Refrigeration, Pion, London, 1986, p. 10.
- [3] ROWE D., CRC Handbook of Thermoelectrics, CRC Press, New York, 1995.
- [4] BADDING J., Annu. Rev. Mater. Res., 28 (1998), 631.
- [5] ZHU P., IMAIY., ISODA Y., SHINOHARA Y., JIA X., REN G., ZOU G., Mater. Trans., 45 (11) 2004, 3102.
- [6] ZHU P., JIA X., CHEN H., CHEN L., LI D., GUO W., MA H., REN G., ZOU G., Chinese J. High Pressure Phys., 16 (3) (2002), 161.
- [7] MCGUIRE M., MAIK A., DISALVO F., J. Alloy. Compd., 460 (2008), 8.
- [8] MAHAN G., Solid State Phys., 51 (1998), 81.
- [9] PEI Y., LIU Y., J. Alloy. Compd., 514 (2012), 40.
- [10] OVSYANNIKOV S., SHCHENNIKOV V., Appl. Phys. Lett., 90 (2007), 122103.
- [11] LI H., CAI K., WANG H., WANG L., YIN J., ZHOU C., J. Solid State Chem., 182 (4) (2009), 869.
- [12] MENG J., POLVANI D., JONES C., DISALVO F., FEI Y., BADDING J., Chem. Mater. 12 (2000), 197.
- [13] GODWAL B., JAYARAMAN A., MEENAKSHI S., RAO R., SIKKA S., VIJAYAKUMAR V., Phys. Rev. B, 57 (1998), 773.
- [14] SHEKAR N., POLVANI D., MENG J., BADDING J., Physica B, 358 (2005), 14.
- [15] ZHU P., IMAI Y., ISODA Y., SHINOHARA Y., JIA X., ZOU G., Chinese Phys. Lett., 22 (2005), 2103.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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