Relative Magnitude of Crystalline Fields; Crystal Structure of Methyl Iodide
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1743206
Reference8 articles.
1. The Vibrational Spectra of Molecules and Complex Ions in Crystals. I. General Theory
2. Motions of Molecules in Condensed Systems: V. Classification of Motions and Selection Rules for Spectra According to Space Symmetry
3. Motions of Molecules in Condensed Systems. IX. Infrared Absorption Anisotropy and Induced Molecular Motion in a Single Crystal of Benzene
4. Interpretation of the Infrared Spectrum of a Molecular Crystal: Naphthalene
5. The Influence of Temperature and State on Infrared Absorption Spectra: Methyl Iodide
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1. Methyl iodide clusters observed in gas phase by infrared cavity ring-down spectroscopy: The CH3 bending mode at 8μm;The Journal of Chemical Physics;2006-02-07
2. Symmetry and the Surface Infrared Selection Rule for the determination of the Structure of Molecules on Metal Surfaces;Langmuir;1994-10
3. High-pressure Raman study of methyl iodide (CH3I and CD3I) up to 12 GPa;Journal of Raman Spectroscopy;1992-08
4. Raman and infrared spectra of crystalline methyl iodide;Journal of Raman Spectroscopy;1984-12
5. Infrared and raman spectra of the lattice vibrations of CH3Cl and CD3Cl;Chemical Physics Letters;1979-08
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