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Titlebook: Raman Spectroscopy Under Liquid Nitrogen (RUN); Robert N. Compton,Nathan I. Hammer,J. Stewart Hage Book 2022 The Editor(s) (if applicable)

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Lattice Modes in Raman Spectroscopy Under Liquid Nitrogen,onal energy changes at the intramolecular level as well as new features due to intermolecular motions at lower energy. These low energy modes created in RUN spectroscopy involve the molecular lattice. These intramolecular vibrations or “lattice modes” can serve as an indicator of crystal structure,
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Fundamentals of Raman Spectroscopy and Raman Under Nitrogen (RUN),ed as a means of wavelength calibration in all of the spectra shown in the monograph. Freezing of samples at 77 K produces crystals and an example is given for CS.. Brief mention of methods for calculating vibrational spectra is given and the ferrocene RUN spectrum is provided as one example.
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Surface-Enhanced Raman Scattering Under Liquid Nitrogen (SERSUN),that placing SERS samples under liquid nitrogen greatly enhanced the Raman scattering signal further. This new technique is called Surface-Enhanced Raman Scattering Under Liquid Nitrogen (SERSUN). This chapter begins with a theoretical description of plasmons and ends with a detailed description of the SERSUN technique.
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RUN Spectroscopy for the C60 Fullerene Molecule, reduction in symmetry and a higher depolarization ratio as observed. The potential importance of GHRUNS Raman spectroscopy of C. and other molecules in ice to an understanding of carbon/ice in interstellar space is pointed out.
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