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http://dx.doi.org/10.4150/KPMI.2017.24.2.108

Optimization of Spark Plasma Sintering Temperature Conditions for Enhancement of Thermoelectric Performance in Gas-Atomized Bi0.5Sb1.5Te3 Compound  

Jeong, Kwang-yong (Division of Advanced Materials Engineering, Kongju National University)
Lee, Chul Hee (Division of Advanced Materials Engineering, Kongju National University)
Dharmaiah, Peyala (Division of Advanced Materials Engineering, Kongju National University)
Hong, Soon-Jik (Division of Advanced Materials Engineering, Kongju National University)
Publication Information
Journal of Powder Materials / v.24, no.2, 2017 , pp. 108-114 More about this Journal
Abstract
We fabricate fine (<$20{\mu}m$) powders of $Bi_{0.5}Sb_{1.5}Te_3$ alloys using a large-scale production method and subsequently consolidate them at temperatures of 573, 623, and 673 K using a spark plasma sintering process. The microstructure, mechanical properties, and thermoelectric properties are investigated for each sintering temperature. The microstructural features of both the powders and bulks are characterized by scanning electron microscopy, and the crystal structures are analyzed by X-ray diffraction analysis. The grain size increases with increasing sintering temperature from 573 to 673 K. In addition, the mechanical properties increase significantly with decreasing sintering temperature owing to an increase in grain boundaries. The results indicate that the electrical conductivity and Seebeck coefficient ($217{\mu}V/K$) of the sample sintered at 673 K increase simultaneously owing to decreased carrier concentration and increased mobility. As a result, a high ZT value of 0.92 at 300 K is achieved. According to the results, a sintering temperature of 673 K is preferable for consolidation of fine (<$20{\mu}m$) powders.
Keywords
Bismuth telluride; Gas-atomization; spark plasma sintering; thermoelectric materials; grain boundaries;
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1 G. J. Snyder and E. S. Toberer: Nat. Mater., 7 (2008) 105.   DOI
2 P. Dharmaiah, H. S. Kim, K. H. Lee and S. J. Hong: Arch. Metall. Mater., 60 (2015) 1417.   DOI
3 B. C. Sales, D. Mandrus and R. K. Williams: Science, 272 (1996) 1325.   DOI
4 J. P. Heremans, V. Jovovic, E. S. Toberer, A. Saramat, K. Kurosaki, A. Charoenphakdee, S. Yamanaka and G. J. Snyder: Science, 321 (2008) 554.   DOI
5 K. Biswas, J. He, I. D. Blum, C. I. Wu, T. P. Hogan, D. N. Seidman, V. P. Dravid and M. G. Kanatzidis: Nature, 489 (2012) 414.   DOI
6 T. C. Harman, P. J. Taylor, M. P. Walsh and B. E. Laforge: Science, 297 (2002) 2229.   DOI
7 K. C. Park, P. Dharmaiah, H. S. Kim and S. J. Hong: J. Alloys Compd., 692 (2017) 573.   DOI
8 Y. Zheng, Q. Zhang, X. Su, H. Xie, S. Shu, T. Chen, G. Tan, Y. Yan, X. Tang, C. Uher and G. J. Snyder: Adv. Energy Mater., 5 (2015) 1401391.   DOI
9 Z. J. Xu, L. P. Hu, P. J. Ying, X. B. Zhao and T. J. Zhu: Acta Mater., 84 (2015) 385.   DOI
10 B. Poudel, Q. Hao, Y. Ma, Y. Lan, A. Minnich, B. Yu, X. Yan, D. Wang, A. Muto, D. Vashaee, X. Chen, J. Liu, M. S. Dresselhaus, G. Chen and Z. Ren: Science, 320 (2008) 634.   DOI
11 H. T. Chang, C. C. Wang, J. C. Hsu, M. T. Hung, P. W. Li, S. W. Lee: Appl. Phys. Lett., 102 (2013) 101902.   DOI
12 C. Zhang, Z. Peng, Z. Li, L. Yu, K. A. Khor and Q. Xiong: Nano Energy, 15 (2015) 688.   DOI
13 R. Venkatasubramanian, E. Siivola, T. Colpitts and B. O'Quinn: Nature, 413 (2001) 597.   DOI
14 E. B. Kim, P. Dharmaiah, D. W. Shin, K. H. Lee and S. J. Hong: J. Alloys Compd., 703 (2017) 614.   DOI
15 M. H. Bhuiyan, T. S. Kim, J. M. Koo and S. J. Hong: J. Alloys Compd., 509 (2011) 1722.   DOI
16 J. Li, Q. Tan, J. F. Li, D. W. Liu, F. Li, Z. Y. Li, M. Zou and K. Wang: Adv. Funct. Mater., 23 (2013) 4317.   DOI
17 H. Li, H. Jing, Y. Han, G. Q. Lu and L. Xu: Intermetallics, 43 (2013) 16.   DOI
18 Z. A. Munir, U. A. Tamburini and M. Ohyanagi: J. Mater. Sci., 41 (2006) 763.   DOI
19 P. Dharmaiah, H. S. Kim, C. H. Lee, S. J. Hong: J. Alloys Compd., 686 (2016) 1.   DOI
20 S. N. Chizhevskaya and L. E. Shelimova: Inorg. Mater., 31 (1995) 1083.
21 J. Jing, L. Chem, S. Bai and Q. Yao: J. Alloys Compd., 390 (2005) 208.   DOI
22 Y. Yu, B. Zhu, Z. Wu, Z. Huang, X. Y. Wang and F. Q. Zu: Intermetallics, 66 (2015) 40.   DOI