The conformational analysis of tetrahydronaphthoquinones using high resolution solid state 13C NMR spectroscopy
β Scribed by C.A. McDowell; A. Naito; John R. Scheffer; Yiu-Fai Wong
- Publisher
- Elsevier Science
- Year
- 1981
- Tongue
- French
- Weight
- 237 KB
- Volume
- 22
- Category
- Article
- ISSN
- 0040-4039
No coin nor oath required. For personal study only.
β¦ Synopsis
The proton-decoupled 13 C NMR spectra of five conformationally mobile cis-tetrahydronaphthoquinone derivatives were obtained in solution (CDCl ) and in the solid state (cross polarization, magic angle spinning).
The major difference3between the results in the two media is that in solution the spectra consist of a series of well separated two carbon atom singlets whereas in the solid state, the singlets are replaced by doublets, with separations ranging from 0.4 to 9.3 ppm.
This difference is interpreted as being due to rapid equilibrium between enantiomeric conformers in solution resulting in an average plane of symmetry.
In the solid state the static spectrum of the asymmetric conformer is observed, the doublets arising because of the chemical shift differences between two conformationally distinct carbon atoms. The magnitude of the solid state doublet separations can be used to make tentative conformationa assignments.
π SIMILAR VOLUMES
## Abstract Magic angle spinning (MAS) ^13^C NMR was employed to investigate seeds. By combining single pulse excitation (SP) and crossβpolarization (CP) experiments, we showed that both liquid and solid domains of plant seeds (__Arabidopsis thaliana, Lactuca sativa__ and __Pisum sativum__) can be
The miscibility of polyvinylphenol (PVPh) or terpenephenol (TPh) with polyoxymethylene (POM) was examined by high-resolution solid-state 13 C nuclear magnetic resonance (NMR) spectroscopy. It was found that the driving force for the mixing of POM and PVPh is the hydrogenbonding interaction between t