Polarized Raman spectroscopy for studying two-dimensional materials

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초록

Raman spectroscopy has been established as one of the core experimental tools to study two-dimensional materials (2DMs) including graphene, black phosphorus, transitional metal chalcogenides, and other layered materials. If the polarization of the incident photons and the scattered photons are carefully controlled, the selection rules for the Raman scattering from phonon modes allow accurate mode assignments, which is not always possible in Raman scattering measurements using unpolarized light. Furthermore, polarized Raman spectroscopy can be used to determine the crystallographic orientation of isotropic 2DMs with in-plane strain or anisotropic 2DMs. This review explains the basics of polarized Raman spectroscopy, especially in the context of 2DMs research, and survey some of the most important applications of polarized Raman spectroscopy in isotropic and anisotropic 2DMs studies.

키워드

two-dimensional materialRamanpolarizationgrapheneTRANSITION-METAL DICHALCOGENIDESCRYSTALLOGRAPHIC ORIENTATIONTEMPERATURE-DEPENDENCETHERMAL-CONDUCTIVITYSHEAR MODESSCATTERINGGRAPHENEMONOLAYERPHONONMOS2
제목
Polarized Raman spectroscopy for studying two-dimensional materials
저자
Kim, JungcheolLee, Jae-UngCheong, Hyeonsik
DOI
10.1088/1361-648X/ab8848
발행일
2020-08-12
유형
Review
저널명
Journal of Physics Condensed Matter
32
34