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Phase-switchable preparation of solution-processable WS2 mono- or bilayers

  • Liang Mei,
  • Zhan Gao,
  • Ruijie Yang,
  • Zhen Zhang,
  • Mingzi Sun,
  • Xiongyi Liang,
  • Yuefeng Zhang,
  • Ting Ying,
  • Honglu Hu,
  • Dengfeng Li,
  • Qinghua Zhang,
  • M. Danny Gu,
  • Lin Gu,
  • Jiang Zhou,
  • Bolong Huang,
  • Damien Voiry,
  • Xiao Cheng Zeng,
  • Yang Chai,
  • Ju Li,
  • Xinge Yu,
  • Zhiyuan Zeng

摘要

Crystal phase plays a crucial role in determining the properties of two-dimensional (2D) transition metal dichalcogenides. Here we achieve phase-switchable preparation of 2D transition metal dichalcogenides using an electrochemical lithium-ion intercalation-based exfoliation strategy by controlling the discharge current density and cutoff voltage. We discover that a small discharge current density (0.005 A g−1, with a 0.9 V cutoff voltage) produces pure semiconducting 2H phase WS2 bilayers. In contrast, a large discharge current density (0.02 A g−1, with a 0.7 V cutoff voltage) leads to the dominant semimetallic 1T′ phase WS2 monolayers. The phase-switching mechanism was clarified through cryo-electron microscopy, annular dark-field scanning transmission electron microscopy, Raman, X-ray photoelectron spectroscopy, etc. The device (humidity sensor) application of produced 2D WS2 was then demonstrated, showing phase-dependent humidity-sensing performances confirming the potential of our produced 2D WS2 with switchable phase in device applications.