In-Plane Seebeck Coefficients of Thickness-Modulated 2D PtSe2Thin Films

  • Kim, Gil-Sung
  • Park, No-Won
  • Kang, Min-Sung
  • Choi, Jae Won
  • Lee, Won-Yong
  • ... Lee, Sang-Kwon
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초록

Two-dimensional (2D) PtSe2 is rapidly emerging as a promising candidate for developing devices that exhibit a significantly enhanced thermoelectric power factor because of its thickness-modulation-induced tunable semiconductor-to-semimetal transition characteristic. This interesting phenomenon motivated us to measure the in-plane Seebeck coefficients and electrical conductivities of large-area 2D PtSe2 thin films with approximately 2-15 nm thicknesses. We observed an outstanding in-plane Seebeck coefficient of ∼73.7 μV/K and a high electrical conductivity of ∼216 S/cm in the 9-nm-thick 2D PtSe2 film than in the ∼6-nm-thick 2D PtSe2 film at 300 K. Our observations suggest that thickness-dependent semiconductor-to-semimetal transitions in PtSe2-based materials offer a distinguishable advantage for enhancing the power factor of 2D PtSe2-based thermoelectric devices. ©

키워드

THERMOELECTRIC PROPERTIESMONOLAYERDICHALCOGENIDESCONDUCTIVITYPTTE2BAND
제목
In-Plane Seebeck Coefficients of Thickness-Modulated 2D PtSe2Thin Films
저자
Kim, Gil-SungPark, No-WonKang, Min-SungChoi, Jae WonLee, Won-YongLee, Sang-Kwon
DOI
10.1021/acs.jpcc.1c09500
발행일
2022-03
유형
Article
저널명
The Journal of Physical Chemistry C
126
8
페이지
4150 ~ 4156