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Thermoelectric Properties of In Situ Formed Bi0.85Sb0.15/Bi-Rich Particles Composite

Academic Article
Publication Date:
2011
abstract:
A Bi-15 at.%Sb alloy, homogenized by equal channel angular extrusion (ECAE) at T = 523 K, has been treated just above its solidus temperature, causing segregation of a secondary Bi-rich phase at the grain boundaries. This process results in an in situ composite. The thermoelectric properties of the composite have been measured in the range of 5 K < T < 300 K. The results are compared with those of the homogeneous alloy. The presence of a Bi-rich phase improves the Seebeck coefficient at T < 50 K, and enhances the electrical conductivity by a factor of 1.4 at T = 300 K up to a factor of 3.4 at T = 50 K; unfortunately, the thermal conductivity also increases by about 50% in the same temperature range. As a result, the figure of merit, Z, is slightly suppressed above T = 110 K, but increases at lower temperatures, reaching a peak value of 4.2 x 10(-3) K(-1) at T = 90 K. The power factor considerably increases over the whole temperature range, rendering this material suitable as the n-type leg of a cryogenic thermoelectric generator for cold energy recovery in a liquefied natural gas plant.
Iris type:
01.01 Articolo in rivista
Keywords:
BI-SB ALLOYS; Bi-Sb thermoelectric alloy; in situ composite; ECAE process; cryogenic thermoelectric generator
List of contributors:
Ceresara, Sergio; Passaretti, Francesca; Codecasa, MATTEO PAOLO; Fanciulli, Carlo
Authors of the University:
FANCIULLI CARLO
PASSARETTI FRANCESCA
Handle:
https://iris.cnr.it/handle/20.500.14243/22210
Published in:
JOURNAL OF ELECTRONIC MATERIALS
Journal
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URL

http://www.springerlink.com/content/er54554650871868/
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