Book Chapter10.1016/B978-0-12-386984-5.10001-1
Introduction: Infrared and Raman Spectroscopy
Peter J. Larkin
- 01 Jan 2011
pp 1-5
835
TL;DR: In this paper, the authors introduce how both mid-infrared (mid-IR) and Raman spectroscopy provide characteristic fundamental vibrations that are employed for the elucidation of molecular structure.
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Abstract: This chapter introduces how both mid-infrared (mid-IR) and Raman spectroscopy provide characteristic fundamental vibrations that are employed for the elucidation of molecular structure. Mid-IR, near-IR, and Raman spectroscopy are part of vibrational spectroscopy. Raman spectroscopy is best at symmetric vibrations of nonpolar groups while IR spectroscopy is best at the asymmetric vibrations of polar groups. Infrared and Raman spectroscopy involve the study of the interaction of radiation with molecular vibrations but differ in the manner in which photon energy is transferred to the molecule by changing its vibrational state. IR spectroscopy measures transitions between molecular vibrational energy levels as a result of the absorption of mid-IR radiation. The IR and Raman vibrational bands are characterized by their frequency (energy), intensity, and band shape (environment of bonds). The frequencies of these molecular vibrations depend on the masses of the atoms, their geometric arrangement, and the strength of their chemical bonds. Two different approaches are used for the interpretation of vibrational spectroscopy and elucidation of molecular structure. The first approach is the use of group theory with mathematical calculations of the forms and frequencies of the molecular vibrations, and the second approach is the use of empirical characteristic frequencies for chemical functional groups. IR spectroscopy was the first structural spectroscopic technique widely used by organic chemists. An extensive user base resulted in a great increase in available IR interpretation tools and the eventual development of FT-IR instrumentation.
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References
Spectra-Structure Correlations in the Infra-Red Region
TL;DR: In this article, a chart giving probable positions of characteristic infra-red absorption bands for certain molecular groupings is presented, and the reliability of the various correlations is discussed in the text.
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A Representation of the Dynamic Properties of Molecules by Mechanical Models
TL;DR: In this paper, it was shown that Raman lines correspond very closely to characteristic fundamental molecular frequencies, and it is possible to identify the Raman line with definite types of motion of particular atoms in the molecule.
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Vibrating molecular models: Frequency shifts in strained ring double bonds
TL;DR: In this article, the general effect of double bond-single bond interaction using vibrating molecular models was studied using a double-and single-branch model, and it was shown that the effect of single-and double-branched interactions is positively correlated.
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