Temperature-Dependent Thermal Transport of Polycrystalline van der Waals Semimetallic PtSe2 Films

  • Park, No-Won
  • Lee, Hyejeong
  • Choi, Jae-Won
  • Shin, Hosun
  • Kang, Min-Sung
  • ... Lee, Sang Kwon
  • 외 4명
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초록

We report both phononic and electronic transports ofpolycrystallinelarge-area platinum diselenide (PtSe2) thin films by measuringin-plane thermal conductivity and the Seebeck coefficient using asuspended bridge-type method and a strain gauge-controlled suspendplatform, respectively. We observe the greatly suppressed in-planethermal conductivity of & SIM;2.6 W/m & BULL;K, which is approximately670% suppressed value, for 11 nm thick polycrystalline PtSe2 films as compared to that of an exfoliated similarly thick in-planesingle-crystalline PtSe2 layer at 300 K. This reductionis attributed to the enhanced phonon scattering in polycrystallinePtSe(2) thin films. The measured in-plane Seebeck coefficientand electrical conductivity of the samples are as high as & SIM;79 & mu;V/K and & SIM;416 S/cm at 300 K, respectively. Our findingscan pave the way toward an effective strategy for promising large-areaTE energy harvesting devices with a high figure-of-merit in 2D semimetallictransition-metal dichalcogenide materials.

키워드

THERMOELECTRIC PERFORMANCECONDUCTIVITYFIGUREMERIT
제목
Temperature-Dependent Thermal Transport of Polycrystalline van der Waals Semimetallic PtSe2 Films
저자
Park, No-WonLee, HyejeongChoi, Jae-WonShin, HosunKang, Min-SungKim, Si-HooCho, Jung-MinKim, Min-JeongKim, Gil-SungLee, Sang Kwon
DOI
10.1021/acs.jpcc.3c03089
발행일
2023-07
유형
Article
저널명
The Journal of Physical Chemistry C
127
28
페이지
13556 ~ 13561