The question regarding chirality in nitroxides was rigorously investigated, namely, (a) are multiple EPR and ENDOR spectra expected from nitroxides with chiral centers, (b) which structures provide multiple structures and (c) under what conditions (temperature and solvent) are they obtained. It is s
EPR and ENDOR study of chiral nitroxides
✍ Scribed by Hartmut B. Stegmann; Frank-Martin Schaber; Paul Schuler; Klaus Scheffler
- Publisher
- John Wiley and Sons
- Year
- 1989
- Tongue
- English
- Weight
- 408 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0749-1581
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✦ Synopsis
Racemic and achiral alkyl aryl nitroxides were examined at various temperatures. The restricted rotation of the aminoxyl substituents was indicated both by the β-proton coupling constants and by the inequivalence of the aromatic ortho protons. These results are interpreted by the presence of two different rotamers which may lead to two splitting constants for the β-proton. The capability for inter- and intra-molecular hydrogen bond formation in the nitroxides investigated was demonstrated. However, complexes consisting of chiral radicals and chiral auxiliaries do not show hyperfine structures which unambiguously indicate diastereomeric species. Therefore, hydrogen bonding between chiral molecules is not sufficient for chiral recognition if an alteration of the hyperconjugation angle does not occur. Simple steric interactions can result in the doubling of the β-proton coupling constant, independently of diastereomeric complex formation.
📜 SIMILAR VOLUMES
The ENDOR spectnun of the triphenylmethyl radical formed by heat treatment of triphenylmethane has been measured in solution at 131 "C. The derived hyperfine coupling constants of 2.770,2.556 and 1 . B G were used to simulate the extremely well resolved EPR spectnun. These coupling constants are in
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## Abstract Several polycyclic aromatic radical cations produced in Friedel–Crafts alkylation reactions were studied by EPR and ENDOR methods, and the following were identified: 1,2,5,6‐tetramethylanthracene, 2,3,6,7,9,10‐hexamethylanthracene, 3,6,11,14‐tetramethyldibenzo [__a,c__]triphenylene and