Thermal Conductivity Mechanisms in Compressed Thermoelectric Materials Based on A4B6 Compounds
DOI:
https://doi.org/10.15330/pcss.19.3.230-233Keywords:
Lead telluride, solid solutions, thermal conductivity, pressingAbstract
The factors influencing the value of the thermal conductivity coefficient of thermoelectric materials based on
lead telluride obtained by powder pressing method have been analyzed. The model is presented and its
parameters are defined, which explains qualitatively and quantitatively the temperature dependences of the
thermal conductivity coefficient of PbTe and PbSnAgTe.
References
[1]. Li-Dong Zhao, Vinayak P. Dravid, Mercouri G. Kanatzidis, Energy Environ. Sci., 7 (2014) 251–268.
[2]. I. V. Horichok, I. M. Lishchynsky, S. I. Mudryy, O. S. Oberemok, T. O. Semko, I. M. Khatsevych, O. M.
Matkivsky, G. D. Mateik, R. O. Dzumedzey, SEMST, 14(3) (2017) 53-64.
[3]. I.V. Horichok, M.O. Galushchak, O.M. Matkivskyj, I.P. Yaremij, R.Ya. Yavorskyj, V.S. Blahodyr, O.I.
Varunkiv, T.O. Parashchuk, Journal of Nano- and Electronic Physics, 9(5) (2017), 05022-1 - 05022-7.
[4]. Ihor Horichok, Rasit Ahiska, Dmytro Freik, Lyubomyr Nykyruy, Stepan Mudry, Ostap Matkivskiy, Taras
Semko, Journal of Electronic Materials, 45(3) (2016) 1576-1583; doi: DOI 10.1007/s11664-015-4122-9.
[5]. M. O. Halushchak, I. V. Horichok, T. O. Semko, S. I. Mudry, S. V. Optasyuk, R. O. Dzumedzey, Physics and
Chemistry of Solid State, 18(2) (2017) 211-214; doi: 10.15330/pcss.18.2.211-214.
[6]. Yanzhong Pei, Aaron La Londe, Shiho Iwanagaand G. Jeffrey Snyder, Energy Environ. Sci., 4 (2011) 2085–
2089.
[7]. Oliver Falkenbachr, Andreas Schmitzz, David Hartung, Torben Dankworf, Guenter Koch, Lorenz Kienlea, Peter
J. Klar, Eckhard Muellerrand Sabine Schlechtr, The 2014 International Conference on Thermoelectrics, July 6-
10, 2014, Nashville, Tennessee, USA (2014).
[8]. D. M. Freik, R. Y. Mykhaylyonka, V. M. Klanichka, Physics and Chemistry of Solid State, 5(1) (2004) 173-
191.
[9]. Eric S. Toberer, Alex Zevalkink, G. Jeffrey Snyder, J. Mater. Chem., 21 (2011) 15843.
[10] Y. I. Ravych, I. A. Smirnov, V. V. Tyhonov. Semiconductors, 7(2) (1967) 206-210.
[11]. Y.-L. Pei, Y. Liu, Journal of Alloys and Compounds, 514 (2012) 40– 44.
[12]. O. I. Rogachova, I. M. Kryvulkin, Semiconductors, 43(6) (2001) 1000-1003.
[13]. O. I. Markov, 13 Seminar «Thermoelectrics and their application» (ноябрь 2012 г) 180-185 (2012).
[14]. K. K. Choudhary, D. Prasad, K. Jayakumar, D. Varshney, Internationale Journal of Nanoscience 8(6) (2009)
551-556.
[2]. I. V. Horichok, I. M. Lishchynsky, S. I. Mudryy, O. S. Oberemok, T. O. Semko, I. M. Khatsevych, O. M.
Matkivsky, G. D. Mateik, R. O. Dzumedzey, SEMST, 14(3) (2017) 53-64.
[3]. I.V. Horichok, M.O. Galushchak, O.M. Matkivskyj, I.P. Yaremij, R.Ya. Yavorskyj, V.S. Blahodyr, O.I.
Varunkiv, T.O. Parashchuk, Journal of Nano- and Electronic Physics, 9(5) (2017), 05022-1 - 05022-7.
[4]. Ihor Horichok, Rasit Ahiska, Dmytro Freik, Lyubomyr Nykyruy, Stepan Mudry, Ostap Matkivskiy, Taras
Semko, Journal of Electronic Materials, 45(3) (2016) 1576-1583; doi: DOI 10.1007/s11664-015-4122-9.
[5]. M. O. Halushchak, I. V. Horichok, T. O. Semko, S. I. Mudry, S. V. Optasyuk, R. O. Dzumedzey, Physics and
Chemistry of Solid State, 18(2) (2017) 211-214; doi: 10.15330/pcss.18.2.211-214.
[6]. Yanzhong Pei, Aaron La Londe, Shiho Iwanagaand G. Jeffrey Snyder, Energy Environ. Sci., 4 (2011) 2085–
2089.
[7]. Oliver Falkenbachr, Andreas Schmitzz, David Hartung, Torben Dankworf, Guenter Koch, Lorenz Kienlea, Peter
J. Klar, Eckhard Muellerrand Sabine Schlechtr, The 2014 International Conference on Thermoelectrics, July 6-
10, 2014, Nashville, Tennessee, USA (2014).
[8]. D. M. Freik, R. Y. Mykhaylyonka, V. M. Klanichka, Physics and Chemistry of Solid State, 5(1) (2004) 173-
191.
[9]. Eric S. Toberer, Alex Zevalkink, G. Jeffrey Snyder, J. Mater. Chem., 21 (2011) 15843.
[10] Y. I. Ravych, I. A. Smirnov, V. V. Tyhonov. Semiconductors, 7(2) (1967) 206-210.
[11]. Y.-L. Pei, Y. Liu, Journal of Alloys and Compounds, 514 (2012) 40– 44.
[12]. O. I. Rogachova, I. M. Kryvulkin, Semiconductors, 43(6) (2001) 1000-1003.
[13]. O. I. Markov, 13 Seminar «Thermoelectrics and their application» (ноябрь 2012 г) 180-185 (2012).
[14]. K. K. Choudhary, D. Prasad, K. Jayakumar, D. Varshney, Internationale Journal of Nanoscience 8(6) (2009)
551-556.
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Published
2019-10-03
How to Cite
Prokopiv, V. ., Horichok, I. ., Semko, T., Matkivskiy, O., Dzumedzey, R., Konevych, O., & Mateik, H. (2019). Thermal Conductivity Mechanisms in Compressed Thermoelectric Materials Based on A4B6 Compounds . Physics and Chemistry of Solid State, 19(3), 230–233. https://doi.org/10.15330/pcss.19.3.230-233
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Scientific articles