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  • Royal Society of Chemistry (RSC)  (1)
  • Carvalho, Bruno R.  (1)
  • English  (1)
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  • Royal Society of Chemistry (RSC)  (1)
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  • English  (1)
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    Online Resource
    Online Resource
    Royal Society of Chemistry (RSC) ; 2021
    In:  Physical Chemistry Chemical Physics Vol. 23, No. 48 ( 2021), p. 27103-27123
    In: Physical Chemistry Chemical Physics, Royal Society of Chemistry (RSC), Vol. 23, No. 48 ( 2021), p. 27103-27123
    Abstract: In this perspective review, we discuss the power of polarized Raman spectroscopy to study optically anisotropic 2D materials, belonging to the orthorhombic, monoclinic and triclinic crystal families. We start by showing that the polarization dependence of the peak intensities is described by the Raman tensor that is unique for each phonon mode, and then we discuss how to determine the tensor elements from the angle-resolved polarized measurements by analyzing the intensities in both the parallel- and cross-polarized scattering configurations. We present specific examples of orthorhombic black phosphorus and monoclinic 1T′-MoTe 2 , where the Raman tensors have null elements and their principal axes coincide with the crystallographic ones, followed by a discussion on the results for triclinic ReS 2 and ReSe 2 , where the axes of the Raman tensor do not coincide with the crystallographic axes and all elements are non-zero. We show that the Raman tensor elements are, in general, given by complex numbers and that phase differences between tensor elements are needed to describe the experimental results. We discuss the dependence of the Raman tensors on the excitation laser energy and thickness of the sample within the framework of the quantum model for the Raman intensities. We show that the wavevector dependence of the electron–phonon interaction is essential for explaining the distinct Raman tensor for each phonon mode. Finally, we close with our concluding remarks and perspectives to be explored using angle-resolved polarized Raman spectroscopy in optically anisotropic 2D materials.
    Type of Medium: Online Resource
    ISSN: 1463-9076 , 1463-9084
    Language: English
    Publisher: Royal Society of Chemistry (RSC)
    Publication Date: 2021
    detail.hit.zdb_id: 1476283-3
    detail.hit.zdb_id: 1476244-4
    detail.hit.zdb_id: 1460656-2
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