Cu-Bi-Se-based pavonite homologue: a promising thermoelectric material with low lattice thermal conductivity

  • Cho, Jung Young
  • Mun, Hyeona
  • Ryu, Byungki
  • Kim, Sang Il
  • Hwang, Sungwoo
  • 외 8명
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초록

Pavonite homologues, Cux+yBi5-ySe8 (1.2 <= x <= 1.5, 0.1 <= y <= 0.4), in a polycrystalline bulk form have been synthesized using a conventional solid state sintering technique. Their thermal and electronic transport properties were evaluated for mid-temperature thermoelectric power generation applications. Structural complexity, based on unique substitutional and interstitial Cu atoms in the structure, makes this system attractive as an intrinsic low thermal conductivity material; also the band structure calculations revealed that interstitial Cu atoms generate n-type carrier conduction. Room temperature lattice thermal conductivities ranging between 0.41 W m(-1) K-1 and 0.55 W m(-1) K-1 were found for Cux+yBi5-ySe8; these values are comparable to those of the state-of-the-art low lattice thermal conductivity systems. These extremely low thermal conductivities combined with the power factors result in the highest ZT = 0.27 at 560 K for Cu1.9Bi4.6Se8.

키워드

PERFORMANCEALLOYSSEMICONDUCTOR
제목
Cu-Bi-Se-based pavonite homologue: a promising thermoelectric material with low lattice thermal conductivity
저자
Cho, Jung YoungMun, HyeonaRyu, ByungkiKim, Sang IlHwang, SungwooRoh, Jong WookYang, Dae JinShin, Weon HoLee, Sang MockChoi, Soon-MokKang, Dae JoonKim, Sung WngLee, Kyu Hyoung
DOI
10.1039/c3ta11457k
발행일
2013
유형
Article
저널명
Journal of Materials Chemistry A
1
34
페이지
9768 ~ 9774