Raman Spectroscopy of Two-Dimensional Borophene Sheets

ACS Nano. 2019 Apr 23;13(4):4133-4139. doi: 10.1021/acsnano.8b08909. Epub 2019 Mar 28.

Abstract

The successful fabrication of a two-dimensional boron sheet, which features a triangular lattice with periodic hole arrays, has stimulated great interest in its specific structure as well as properties such as possible superconductivity. Here, we report a study on the vibrational spectra and electron-phonon coupling (EPC) in monolayer boron sheets by in situ Raman and tip-enhanced Raman spectroscopy (TERS) at low temperature and ultrahigh vacuum. The gap-mode TERS gives a 3 × 109 selective enhancement on vertical vibrational Raman modes. A spatial resolution of 1 nm is achieved in this system. Combined with first-principle calculations, the vibrational properties as well as EPC in borophene are determined. The results are helpful for further study on the mechanical, electronic, and possible superconducting properties of two-dimensional boron.

Keywords: Raman spectroscopy; borophene; electron−phonon coupling; tip-enhanced Raman spectroscopy; two-dimensional materials; vibrational property.