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Investigation of Phase Segregation in p -Type Bi 0.5 Sb 1.5 Te 3 Thermoelectric Alloys by In Situ Melt Spinning to Determine Possible Carrier Filtering Effect.

Dong Ho KimTaeWan KimSe Woong LeeHyun-Sik KimWeon Ho ShinSang-Il Kim
Published in: Materials (Basel, Switzerland) (2021)
One means of enhancing the performance of thermoelectric materials is to generate secondary nanoprecipitates of metallic or semiconducting properties in a thermoelectric matrix, to form proper band bending and, in turn, to induce a low-energy carrier filtering effect. However, forming nanocomposites is challenging, and proper band bending relationships with secondary phases are largely unknown. Herein, we investigate the in situ phase segregation behavior during melt spinning with various metal elements, including Ti, V, Nb, Mo, W, Ni, Pd, and Cu, in p -type Bi 0.5 Sb 1.5 Te 3 (BST) thermoelectric alloys. The results showed that various metal chalcogenides were formed, which were related to the added metal elements as secondary phases. The electrical conductivity, Seebeck coefficient, and thermal conductivity of the BST composite with various secondary phases were measured and compared with those of pristine BST alloys. Possible band alignments with the secondary phases are introduced, which could be utilized for further investigation of a possible carrier filtering effect when forming nanocomposites.
Keyphrases
  • magnetic resonance imaging
  • computed tomography
  • gold nanoparticles
  • carbon nanotubes
  • sensitive detection