“Infrared Spectra of Steroids. II. The Influence of the Solvent on Carbonyl Frequency Correlations”
- 1 May 1955
- journal article
- research article
- Published by SAGE Publications in Applied Spectroscopy
- Vol. 9 (2), 69-77
- https://doi.org/10.1366/000370255774634070
Abstract
The influence of solvents on frequencies of the carbonyl absorption bands in the infrared spectra of 56 steroids has been investigated with a double beam spectrophotometer. Good agreement was obtained with data previously published for the characteristic frequencies in carbon disulfide for similar types of ketosteroids. The carbonyl absorption maxima in chloroform and methylene bromide were displaced toward lower frequencies by about 2–17 cm−1 from their frequencies in carbon disulfide or carbon tetrachloride. The magnitude of the shift depended upon the location and type of carbonyl group. Additional dispalcement of the order of 1–19 cm−1 was found in bromoform solution. In mineral oil spectra, considerable variation in frequencies were observed for a particular carbonyl group at the same position in different steroid molecules. The absorption maxima of two Δ5-7-ketosteroids are reported for the first time to be at the same position as those of Δ4-3-ketosteroids. A new interaction of the 3 a, 9a-epoxides with the 11 carbonyl group has been suggested. While Δ4-3-ketosteroids could not be distinguished from Δ9-12-ketosteroids in carbon disulfide or carbon tetrachloride, the absorption maxima were at sufficiently different frequencies in chloroform or methylene bromide. In a series of four ketones with the carbonyl group at different positions along the side chain, it was observed that the 24 and 25 carbonyl absorption bands were closer to those of simple aliphatic ketones than the 20 and 22 ketones. A similar shift to higher frequencies as the chain length was increased was observed for three steroid acids. When the ketonic absorption band was very close to that of an acetate, broadening of the latter band in chloroform, methylene bromide and bromoform resulted in poor resolution.Keywords
This publication has 21 references indexed in Scilit:
- Studies in Steroid Metabolism. XII. The Determination of the Structure of the Side Chains of C-21 Steroids by Infrared SpectrometryJournal of the American Chemical Society, 1952
- Infrared Spectra of Organic Compounds Exhibiting PolymorphismJournal of the American Chemical Society, 1952
- Performance of a Double-Beam Recording Infra-Red SpectrophotometerJournal of the Optical Society of America, 1950
- Studies in Steroid Metabolism. IX. Further Observations on the Infrared Absorption Spectra of Ketosteroids and Steroid EstersJournal of the American Chemical Society, 1950
- Infrared Studies of Hindered PhenolsJournal of the American Chemical Society, 1949
- Maltotriose and its Crystalline β-D-HendecaacetateJournal of the American Chemical Society, 1949
- Infrared and Ultraviolet Spectroscopic Studies on KetonesJournal of the American Chemical Society, 1949
- Studies in Steroid Metabolism. VI. The Characterization of 11- and 12-Oxygenated Steroids by Infrared SpectrometryJournal of the American Chemical Society, 1949
- Influence of Solvent, Hydrogen Bonding, Temperature and Conjugation on the Ultraviolet Spectra of Phenols and Aromatic Hydrocarbons1Journal of the American Chemical Society, 1948
- Studies in Steroid Metabolism. IV. The Characterization of Carbonyl and Other Functional Groups in Steroids by Infrared Spectrometry1Journal of the American Chemical Society, 1948