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Effect of low-frequency optical phonons on the thermal conductivity of 2H molybdenum disulfide

  • Zuo Yuan Dong
  • , Yan Zhou
  • , Xin Qian Chen
  • , Wei Jian Li
  • , Zi Yu Cao
  • , Chen Luo
  • , Guo Hua Zhong
  • , Qing Peng
  • , Xing Wu
  • , Xiao Jia Chen
  • East China Normal University
  • Center for High Pressure Science & Technology Advanced Research
  • School of Science, Harbin Institute of Technology Shenzhen
  • Shenzhen Institute of Advanced Technology
  • CAS - Institute of Mechanics

科研成果: 期刊稿件文章同行评审

摘要

Phonon engineering is a novel and effective approach to tailor the thermal conductivity for the thermoelectric performance and heat dissipation. In general, the acoustic phonons rather than the optical phonons are dominant in heating carriers. Here we report an unprecedented large contribution, 47% overall, from the low-frequency optical phonons to the in-plane thermal conductivity in 2H molybdenum disulfide, revealed by low-wave-number high-pressure Raman technology assisted with first-principles calculations. The analysis of phonon dispersion curves and Grüneisen parameters of individual phonon modes reveals that the large contribution originates in a joint effect of the large group velocity of low-frequency optical phonons and their strong anharmonic effects. The joint effect is continuously maintained when pressure increases, up to 20 GPa. Our work provides new insights into the optical phonon transport, paving the way for the phonon engineering and thermal management.

源语言英语
文章编号184301
期刊Physical Review B
105
18
DOI
出版状态已出版 - 1 5月 2022

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