Molecular Dynamics in the System Methanol-Dimethylsulphoxide

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Abstract

NMR proton relaxation rates of normal and oxygen-17 enriched m ethanol-d3 in a mixture of 71 mol% methanol and 29 mol% dim ethylsulphoxide-d6 (DM SO ) were measured as a function of temperature between 298 and 158 K. From these data rotational correlation times of the methanol molecule in the mixture and the oxygen-proton dipolar spin-lattice coupling parameter were obtained. The latter parameter is considerably smaller than the one obtained from neutron diffraction studies of the molecular geometry of methanol. Additionally, deuteron and oxygen-17 relaxation rates were measured over the same temperature range. U sing the rotational correlation times obtained from the oxygen-17 induced proton relaxation rates, the quadrupole coupling constant for deuterium was derived; it shows a temperature dependence. Application of the Poplett relation yielded the oxygen-17 quadrupole coupling constants, so that oxygen correlation times could be obtained. Comparison of deuteron and oxygen correlation times indicates that the reorientation of the methanol molecule in the m ethanol/DMSO mixture is anisotropic. © - Verlag der Zeitschrift für Naturforschung

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APA

Ludwig, R., Zeidler, M. D., & Farrar, T. C. (1994). Molecular Dynamics in the System Methanol-Dimethylsulphoxide. Zeitschrift Fur Naturforschung - Section A Journal of Physical Sciences, 49(12), 1131–1135. https://doi.org/10.1515/zna-1994-1205

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