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Thermoelectric Properties of Nanocomposite Bi0.45Sb1.55Te2.985 Solid Solution with SiO2 Microparticles

Authors :
L. N. Lukyanova
Alexander T. Burkov
D. A. Kurdyukov
A. Yu. Samunin
E. Yu. Stovpiaga
P. P. Konstantinov
A. A. Shabaldin
Source :
Semiconductors. 53:742-746
Publication Year :
2019
Publisher :
Pleiades Publishing Ltd, 2019.

Abstract

Nanocomposite thermoelectrics based on Bi0.45Sb1.55Te2.985 solid solution of p-type conductivity are fabricated by the hot pressing of nanopowders of this solid solution with the addition of SiO2 microparticles. Investigations of the thermoelectric properties show that the thermoelectric power of the nanocomposites increases in a wide temperature range of 80–420 K, while the thermal conductivity considerably decreases at 80–320 K, which, despite a decrease in the electrical conductivity, leads to an increase in the thermoelectric efficiency in the nanostructured material without the SiO2 addition by almost 50% (at 300 K). When adding SiO2, the efficiency decreases. The initial thermoelectric fabricated without nanostructuring, in which the maximal thermoelectric figure of merit ZT = 1 at 390 K, is most efficient at temperatures above 350 K.

Details

ISSN :
10906479 and 10637826
Volume :
53
Database :
OpenAIRE
Journal :
Semiconductors
Accession number :
edsair.doi...........b01662671b22d4fbfc46c552b7aa5499
Full Text :
https://doi.org/10.1134/s1063782619060186