EFFECT OF THE FREQUENCY OF INTRAMOLECULAR MOTIONS ON THE NMR RELAXATION IN LIQUID STATE TEMPERATURE REGIME - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Molecular Physics Année : 2009

EFFECT OF THE FREQUENCY OF INTRAMOLECULAR MOTIONS ON THE NMR RELAXATION IN LIQUID STATE TEMPERATURE REGIME

Résumé

Equations for the spectral densities of complex motion of a spin pair undergoing internal motion and isotropic/anisotropic overall rotation have been considered. The fluctuations of the interproton distances, caused by internal motion, have been taken into account in the theoretical equations. A method allowing a distinction between the isotropic and the anisotropic overall rotation of molecules has been proposed. The effect of the activation parameters of internal motions (known from the solid state study) on the measured T1 relaxation of the 13C and 1H - 1H cross-relaxation rates has been analysed for methyl-β-D-galactopyranoside in DMSO-d6 solution. The conformational trans-gauche jumps of the methylene group are not fast enough to affect the T1 value of carbon C6 in the liquid state temperatures regime. Only the methyl group rotation is a very fast internal motion. This motion influences the carbon C7 relaxation and methyl protons - anomeric proton cross - relaxation. The values of interatomic distances between anomeric H(C1) and H(C5) as well as the three methyl protons H(C7) have been calculated from the cross-relaxation rates. The distance H(C1) - H (C7) fluctuates due to the rotation of methyl group. The application of the "model - free approach" to study molecular dynamics in solutions is discussed.

Mots clés

Fichier principal
Vignette du fichier
PEER_stage2_10.1080%2F00268970902980045.pdf (487.91 Ko) Télécharger le fichier
Origine : Fichiers produits par l'(les) auteur(s)
Loading...

Dates et versions

hal-00513295 , version 1 (01-09-2010)

Identifiants

Citer

Lidia Latanowicz, Zofia Gdaniec. EFFECT OF THE FREQUENCY OF INTRAMOLECULAR MOTIONS ON THE NMR RELAXATION IN LIQUID STATE TEMPERATURE REGIME. Molecular Physics, 2009, 107 (15), pp.1563-1576. ⟨10.1080/00268970902980045⟩. ⟨hal-00513295⟩

Collections

PEER
195 Consultations
49 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More