Applications of NMR spectroscopy of chiral association complexes 5. Stereodynamics and diastereotopism in chiral 1,3‐dienes \documentclass{article}\pagestyle{empty}\begin{document}${\rm HOCMe}_{\rm 2} \rlap{--} ({\rm CCl =\!= CCl\rlap{--})}_{\rm 2} {\rm X}$\end{document}
- 1 October 1978
- journal article
- Published by Wiley in Magnetic Resonance in Chemistry
- Vol. 11 (10) , 481-486
- https://doi.org/10.1002/mrc.1270111002
Abstract
No abstract availableKeywords
This publication has 14 references indexed in Scilit:
- Dissymmetric 1,3-dienes. IV. Syntheses and enantiomerization barriers of some acyclic vic-dialkylidene compoundsJournal of the American Chemical Society, 1976
- Chirale Butadiene, 6. Behinderte Rotation an penta‐ und hexasubstituierten Butadienen – StützeffekteEuropean Journal of Inorganic Chemistry, 1975
- Magnetische Kernresonanz in Gegenwart optisch‐aktiver HilfsverbindungenNachrichten aus Chemie und Technik, 1975
- Direct determination of enantiomeric compositions with optically active nuclear magnetic resonance lanthanide shift reagentsJournal of the American Chemical Society, 1974
- Determination of Rate of Internal Rotation by1H-NMR Spectroscopy in the Presence of Optically Active Auxiliary CompoundsAngewandte Chemie International Edition in English, 1973
- Proof of the Chirality of Rapidly Interconverting EnantiomersAngewandte Chemie International Edition in English, 1973
- Nachweis der Chiralität bei Enantiomeren, die sich rasch ineinander umwandelnAngewandte Chemie, 1973
- Calibration of methanol nuclear magnetic resonance thermometer at low temperatureAnalytical Chemistry, 1970
- Nonequivalence of the nuclear magnetic reasonance spectra of enantiomers in optically active solvents IIITetrahedron Letters, 1967
- The Nonequivalence of Physical Properties of Enantiomers in Optically Active Solvents. Differences in Proton Magnetic Resonance Spectra. IIJournal of the American Chemical Society, 1966