April 2016

Journal

Raman Shifts in Electron-Irradiated Monolayer MoS2

By:
Parkin, William; Balan, Adrian; Liang, Liangbo ; Das, Paul; Lamparski, Michael; Naylor, Carl; Rodríguez-Manzo, Julio; Johnson, A. T.; Meunier, V.; Drndic, Marija
Journal Name:
ACS Nano
Page Number:
4134-4142
Volume:
10
Issue Number:
4
Publication Date:
April 27, 2016
View DOI Listing:
https://doi.org/10.1021/acsnano.5b07388

Abstract

We report how the presence of electron-beam-induced sulfur vacancies affects first-order Raman modes and correlate the effects with the evolution of the in situ transmission-electron microscopy (TEM) two-terminal conductivity of monolayer MoS2 under electron irradiation. We observe a redshift in the E’ Raman peak and a less pronounced blueshift in the A’1 peak with increasing electron dose. Using energy-dispersive X-ray spectroscopy (EDS), we show that irradiation causes partial removal of sulfur and correlate the dependence of the Raman peak shifts with S vacancy density (a few %), which is confirmed by first-principles density functional theory calculations. In situ device current measurements show exponential decrease in channel current upon irradiation. Our analysis demonstrates that the observed frequency shifts are intrinsic properties of the defective systems and that Raman spectroscopy can be used as a quantitative diagnostic tool to characterize MoS2-based transport channels.


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