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Chemical Alloying and Characterization of Nanocrystalline Co1-xNixSb3-yTey Skutterudites

Conference Paper
Publication Date:
2003
abstract:
Novel chemical alloying approach has been developed for the fabrication of nanocrystalline Co1-xNixSb3-yTey skutterudites. The approach has compromised solution chemical synthesis and thermochemical processing under controlled conditions. All of the required elements, Co, Ni, Sb and Te were coprecipitated from an aqueous solution of their salts to produce a precursor with a well-defined composition, fine particle size, high homogeneity, low crystallinity and high reactivity. After calcination and hydrogen reduction of the precursor at moderate temperature of 450 oC for 2 hrs, these elements were alloyed into Co1-xNixSb3-yTey skutterudite of high purity and nano-grain size. These nanocrystalline materials have demonstrated very low thermal conductivities and enhanced thermoelectric performance. Thermal conductivity values of skutterudite have been reduced by 25-75% over polycrystalline materials. With a combined doping by Ni and Te, a ZT value of 0.65 at 700 K has been obtained for the sample of Co0.92Ni0.08Sb2.988Te0.012.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
cobalt compounds; heat treatment; nanostructured materials; nickel compounds; particle size; tellurium; thermal conductivity; thermoelectricity
List of contributors:
Gatti, CARLO EDOARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/62430
Book title:
Source: Proceedings ICT'03. 22nd International Conference on Thermoelectrics (IEEE Cat. No.03TH8726)
Published in:
PROCEEDINGS OF THE IEEE (ONLINE)
Journal
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