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Fabrication of large-scale p-type 75%Sb2Te3-25%Bi2Te3 thermoelectric materials by gas atomization and hot isostatic pressing.

Authors :
Yoon, Sang Min
Madavali, Babu
Lee, Chul-Hee
Femi, Olu Emmanuel
Lee, Jong-Hyeon
Song, Sung Ho
Hong, Soon-Jik
Source :
Materials Research Bulletin. Oct2020, Vol. 130, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

• Produced large-scale (3 Kg/batch) of 75%Sb 2 Te 3 -25%Bi 2 Te 3 powder by gas atomization. • The hot isostatic pressed bulk displays random distribution of grains. • Higher electrical conductivity achieved for 450 °C sample due to high mobility. • Peak ZT of 1.15 obtained for HIPed at 450 °C sample due to high conductivity values. For economic viability of thermoelectric modules, issues of scalability and sturdiness to drive down production and manufacturing cost must be adequately addressed. In this study, we report a large-scale production of 3 Kg/batch of 75%Sb 2 Te 3 -25%Bi 2 Te 3 powder by gas atomization. The as-produced large-scale atomized powder was subsequently sintered by hot isostatic pressing (HIP) at two different temperatures. The microstructure of the HIPed fracture surface reveals a transgranular mode of fracture in the basal plane of the grains perpendicular to the contact surface. The texture analysis showed that grains were randomly distributed and indicating no preferred alignment in any direction. The sample HIPed at 450 °C shows the highest electrical conductivity of 1350 Ω−1 cm−1 at room temperature due to their high carrier mobility. The highest ZT of 1.15 at 375 K was observed for the sample HIPed at 450 °C owing to their high electrical conductivity, and reasonable low thermal conductivity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00255408
Volume :
130
Database :
Academic Search Index
Journal :
Materials Research Bulletin
Publication Type :
Academic Journal
Accession number :
144671460
Full Text :
https://doi.org/10.1016/j.materresbull.2020.110924