Issue 37, 2024

Polarized Raman spectroscopy study of CVD-grown Cr2S3 flakes: unambiguous identification of phonon modes

Abstract

We report a systematic Raman spectroscopy investigation of chemical vapor deposited 2D nonlayered Cr2S3, with both linearly and circularly polarized light over a wide temperature range (5–300 K). Temperature-dependent Raman spectra exhibit a good linear relationship between the peak positions of the phonon modes and temperature. Angle-resolved polarized Raman spectra reveal the polarization-dependent optical response of in-plane and out-of-plane phonon modes. Helicity-dependent Raman investigations complete definite assignment of all the phonon modes observed in the Raman spectra of 2D nonlayered Cr2S3 by the optical selection rule based on a Raman tensor. Our work realizes clear phonon mode identification over a wide temperature range for the emerging material 2D Cr2S3, an important representative of nonlayered 2D system with unique properties for optoelectronic and spintronic applications.

Graphical abstract: Polarized Raman spectroscopy study of CVD-grown Cr2S3 flakes: unambiguous identification of phonon modes

Supplementary files

Article information

Article type
Paper
Submitted
16 Apr 2024
Accepted
06 Aug 2024
First published
19 Aug 2024

Nanoscale, 2024,16, 17452-17462

Polarized Raman spectroscopy study of CVD-grown Cr2S3 flakes: unambiguous identification of phonon modes

A. Gayen, G. H. An, I. N. Rahman, M. Choi, Q. Mustaghfiroh, P. V. Gaikwad, E. S. H. Kang, K. Kim, C. Liu, K. Kim, J. Bang, H. S. Lee and D. Kim, Nanoscale, 2024, 16, 17452 DOI: 10.1039/D4NR01654H

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