Theoretical and experimental investigation of 13C relayed 2H–2H-COSY 2D experiments: Application to the analysis of weakly aligned solutes - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Journal of Magnetic Resonance Année : 2005

Theoretical and experimental investigation of 13C relayed 2H–2H-COSY 2D experiments: Application to the analysis of weakly aligned solutes

Résumé

We describe new NMR 2D experiments denoted DECADENCY for DEuterium CArbon DEuterium Nuclear Correlation spectroscopY dedicated to the analysis of anisotropic deuterium spectra. They belong to the class of X-relayed Y,Y-COSY 2D experiments that was initially explored in the case of a 1H–X–1H fragment (IX = 1/2) in isotropic medium. DECADENCY 2D experiments permit to correlate the quadrupolar doublets associated with two inequivalent deuterium nuclei in an oriented CD2 fragment through heteronuclear polarization transfers. Two kinds of pulse sequences are described here using either a double INEPT-type or DEPT-type process. DECADENCY 2D experiments provide an interesting alternative to 2H–2H COSY experiments when the geminal 2H–2H total coupling (scalar and dipolar) is null or too small to provide visible cross-correlation peaks. Such a situation is typically observed for geminal deuteriums in prochiral or chiral molecules dissolved in chiral liquid crystals. The efficiency of these techniques is illustrated using dideuterated prochiral molecules, the phenyl[2H2]methanol and the 1-chloro[1-2H2]nonane, both dissolved in organic solutions of poly-gamma-benzyl-L-glutamate. The advantages of each sequence are presented and discussed. It is shown that the relative sign of the quadrupolar doublets can be determined.

Dates et versions

hal-02310894 , version 1 (10-10-2019)

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Olivier Lafon, Philippe Lesot. Theoretical and experimental investigation of 13C relayed 2H–2H-COSY 2D experiments: Application to the analysis of weakly aligned solutes. Journal of Magnetic Resonance, 2005, 174 (2), pp.254-264. ⟨10.1016/j.jmr.2005.02.011⟩. ⟨hal-02310894⟩
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