Resonance Raman effects in transition metal dichalcogenides

Citations

WEB OF SCIENCE

44
Citations

SCOPUS

49

초록

Raman spectroscopy is broadly used in the studies of transition metal dichalcogenides to determine the number of layers or other structural parameters. However, unlike the case of graphene, the Raman spectrum varies greatly depending on the excitation energy, and many unusual effects have been reported. The optical absorption spectrum has many features related to exciton states due to the strong coulomb interaction in these materials, and dramatic resonance effects occur when the excitation energy matches one of these exciton states. Several forbidden Raman modes and some unexplained peaks appear near resonance, and Davydov splitting of some Raman modes is observed. Furthermore, the polarization dependence of the some Raman modes also shows excitation energy dependence. In this review, recent progress in resonance Raman studies on transition metal dichalcogenides and some unresolved issues are reviewed. Copyright (c) 2017 John Wiley & Sons, Ltd.

키워드

transition metal dichalcogenidesresonance Raman effectsinterlayer Raman modesDavydov splittingpolarization dependenceFEW-LAYERCRYSTALLOGRAPHIC ORIENTATIONPHOTOLUMINESCENCE EMISSIONELECTRONIC-STRUCTURELATTICE-DYNAMICSMONOLAYER MOS2SHEAR MODESSPECTROSCOPYSCATTERINGMULTILAYER
제목
Resonance Raman effects in transition metal dichalcogenides
저자
Lee, Jae-UngCheong, Hyeonsik
DOI
10.1002/jrs.5200
발행일
2018-01
유형
Review
저널명
Journal of Raman Spectroscopy
49
1
페이지
66 ~ 75