Vibrational properties of a monolayer silicene sheet studied by tip-enhanced Raman spectroscopy

ORAL

Abstract

Combining ultrahigh sensitivity, spatial resolution and capability to resolve chemical information, tip-enhanced Raman spectroscopy (TERS) is a powerful tool to study molecules or nanoscale objects. Here we show that TERS can also be a powerful tool in studying two-dimensional (2D) materials. We have achieved a 109 Raman signal enhancement and a 0.5 nm spatial resolution using monolayer silicene on Ag(111) as a prototypical 2D material system. Due to the selective enhancement on Raman modes with vertical vibrational components in TERS, our experiment provides a direct evidence of the origination of Raman modes in silicene. Furthermore, the ultrahigh sensitivity of TERS allow us to identify different vibrational properties of silicene phases, which differ only in the bucking direction of the Si-Si bonds. Local vibrational features from defects and domain boundaries in silicene can also be identified.

*Thanks MOST of China (2016YFA0300904, 2016YFA0301204), NSF of China (Grants No. 11334011, 11474277, 11434010, 11225421) and the Strategic Priority Research Program of the Chinese Academy of Sciences, Grant No. XDB07020100.

Presenters

  • Shaoxiang Sheng

    • Institute of Physics, The Chinese Academy of Sciences

Authors

  • Shaoxiang Sheng

    • Institute of Physics, The Chinese Academy of Sciences
  • Jiangbin wu

    • Institute of Semiconductors, The Chinese Academy of Sciences
  • Xin Cong

    • Institute of Semiconductors, The Chinese Academy of Sciences
  • Wenbin Li

    • Institute of Physics, The Chinese Academy of Sciences
  • Jian Gou

    • Chinese Academy of Scienes (CAS)
    • Institute of Physics, The Chinese Academy of Sciences
  • Qing Zhong

    • Institute of Physics, The Chinese Academy of Sciences
  • Pinghen Tan

    • Institute of Semiconductors, The Chinese Academy of Sciences
  • Lan Chen

    • Institute of Physics, Chinese Academy of Sciences
    • Chinese Academy of Scienes (CAS)
    • Institute of Physics, The Chinese Academy of Sciences
  • Kehui Wu

    • Institute of Physics, Chinese Academy of Sciences
    • Chinese Academy of Scienes (CAS)
    • Institute of Physics, The Chinese Academy of Sciences