Nanowire-Bundled Grain Boundaries in Thermoelectric Materials

  • Park, Gwang Min
  • Lee, Seunghyeok
  • Hong, Jinseok
  • Nahm, Seokho
  • Baek, Seung-Hyub
  • ... Lee, Seung-Yong
  • 외 2명
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초록

Improving thermoelectric material performance is essential for energy harvesting and solid-state cooling applications. This study demonstrated a novel structure of Bi2Te3-based thermoelectric materials with ZnO nanowire-bundled grain boundaries, realized via atomic layer deposition (ALD) and subsequent spark plasma sintering (SPS). The ZnO nanowires formed at the interfaces due to the rearrangement of the ALD-grown ZnO ultrathin layer over Bi0.4Sb1.6Te3 powder, driven by localized heating during the SPS process and the anisotropic nature of ZnO. The nanowire-bundled interfaces enhanced phonon scattering, thereby reducing lattice thermal conductivity while maintaining excellent electrical transport. This structural innovation achieved a high figure-of-merit, zTmax = 1.69 ± 0.09 at 373 K and an average zT of 1.55 over the range of 300–473 K. A thermoelectric module fabricated with 127 p–n pairs achieved a record-high conversion efficiency of 6.57% at a temperature difference of 163 K. These findings highlight the potential of nanowire-bundled interfaces to enhance the thermoelectric material performance and pave the way for scalable next-generation energy conversion technologies.

키워드

Bi2Te3interfacesnanowiresphonon scatteringthermoelectric materialsBI2TE3-BASED ALLOYSPERFORMANCEENHANCEMENTFIGUREMERITPOWER
제목
Nanowire-Bundled Grain Boundaries in Thermoelectric Materials
저자
Park, Gwang MinLee, SeunghyeokHong, JinseokNahm, SeokhoBaek, Seung-HyubKim, Jin-SangLee, Seung-YongKim, Seong Keun
DOI
10.1002/smll.202503539
발행일
2025-07
유형
Article; Early Access
저널명
Small
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