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2017
Journal Article
Title

Thermoelectric Skutterudite/oxide nanocomposites

Title Supplement
Effective decoupling of electrical and thermal conductivity by functional interfaces
Abstract
Nanocomposites that combine percolated nano-CoSb3 semiconductors with isolated nano-oxide clusters are shown as an effective approach to decouple electrical and thermal conductivity in thermoelectric applications through the formation of functional interfaces. This type of decoupling is very important to increase the Figure of Merit (zT) of thermoelectrics and it is one of the greatest challenges searched by the community. We carry out an innovative synthesis of Skutterudite/oxide nanocomposites in air by high energy milling and sintering by Spark Plasma Sintering, where functional interfaces are developed in situ. A confocal Raman Microscopy study evidences unequivocally the appearance of a space charge layer at the Skutterudite/oxide interfaces characterized by a crystal lattice softening and a surprising enhanced Raman signal. The functional interfaces act as highly effective phonon scattering and trapping centers that highly reduce the thermal conductivity, while a high electrical conductivity is achieved by selective doping the Skutterudite phase. This approach leads to Figures of Merit ca. 1 for Te-doped CoSb3. This work opens up new possibilities for the facile, large scale synthesis of well performing thermoelectric materials for medium range temperatures applications.
Author(s)
Moure, Alberto
Rull-Bravo, Marta
Abad, Begona
Campo, Adolfo del
Munoz Rojo, Miguel
Aguirre, Myriam Haydee
Jacquot, Alexandre
Fernandez, Jose F.
Martin-Gonzalez, Marisol
Journal
Nano energy  
Open Access
DOI
10.1016/j.nanoen.2016.11.041
Language
English
Fraunhofer-Institut für Physikalische Messtechnik IPM  
Keyword(s)
  • thermoelectric materials

  • nanocomposite

  • spark plasma sintering

  • Skutterudite

  • functional interface

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