NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES

Nuclear spin-lattice relaxation times (T1) of both 133Cs and 23Na were measured as a function of temperature for two cesium sodides, Cs+( 18-crown-6)2Na- and Cs+( 15-crown-5)2Na-. A logarithmic dependence of the T1, values of these two compounds on the inverse temperature is interpreted as the resul...

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Main Authors: Wagner, M, Mcmills, L, Ellaboudy, A, Eglin, J, Dye, J, Edwards, P, Pyper, N
Format: Journal article
Language:English
Published: 1992
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author Wagner, M
Mcmills, L
Ellaboudy, A
Eglin, J
Dye, J
Edwards, P
Pyper, N
author_facet Wagner, M
Mcmills, L
Ellaboudy, A
Eglin, J
Dye, J
Edwards, P
Pyper, N
author_sort Wagner, M
collection OXFORD
description Nuclear spin-lattice relaxation times (T1) of both 133Cs and 23Na were measured as a function of temperature for two cesium sodides, Cs+( 18-crown-6)2Na- and Cs+( 15-crown-5)2Na-. A logarithmic dependence of the T1, values of these two compounds on the inverse temperature is interpreted as the result of crown ether rotational/conformational reorientation with average activation barriers of 31.2 and 35.4 kJ mol-1, respectively. This interpretation is supported by the line-width reduction of the 23Na resonances, reduction of the observed 23Na quadrupole coupling constants, and the disappearance of peaks in the powder X-ray diffraction patterns. The line-width data are used with the approximate formula of Waugh (Waugh, J. S.; Fedin, E. I. Sov. Phys. Solid State 1963, 4, 1633) to yield activation barriers in good agreement with the nuclear spin-lattice relaxation analysis. © 1992 American Chemical Society.
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spelling oxford-uuid:2011ff62-1047-4dd0-9df6-bf7045da4ee02022-03-26T11:25:29ZNMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDESJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2011ff62-1047-4dd0-9df6-bf7045da4ee0EnglishSymplectic Elements at Oxford1992Wagner, MMcmills, LEllaboudy, AEglin, JDye, JEdwards, PPyper, NNuclear spin-lattice relaxation times (T1) of both 133Cs and 23Na were measured as a function of temperature for two cesium sodides, Cs+( 18-crown-6)2Na- and Cs+( 15-crown-5)2Na-. A logarithmic dependence of the T1, values of these two compounds on the inverse temperature is interpreted as the result of crown ether rotational/conformational reorientation with average activation barriers of 31.2 and 35.4 kJ mol-1, respectively. This interpretation is supported by the line-width reduction of the 23Na resonances, reduction of the observed 23Na quadrupole coupling constants, and the disappearance of peaks in the powder X-ray diffraction patterns. The line-width data are used with the approximate formula of Waugh (Waugh, J. S.; Fedin, E. I. Sov. Phys. Solid State 1963, 4, 1633) to yield activation barriers in good agreement with the nuclear spin-lattice relaxation analysis. © 1992 American Chemical Society.
spellingShingle Wagner, M
Mcmills, L
Ellaboudy, A
Eglin, J
Dye, J
Edwards, P
Pyper, N
NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title_full NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title_fullStr NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title_full_unstemmed NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title_short NMR-STUDY OF CROWN-ETHER MOTION IN 2 ALKALIDES
title_sort nmr study of crown ether motion in 2 alkalides
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