NMR studies of interionic interactions in N-methylformamide |
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Authors: | Lee-Lin Soong George E. Leroi Alexander I. Popov |
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Affiliation: | (1) Department of Chemistry, Michigan State University, 48824 East Lansing, MI |
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Abstract: | The NMR chemical shifts of alkali and thallium(I) salts with various monovalent anions have been measured in N-methylformamide solution. Lithium-7 chemical shifts are virtually concentration and counter-ion independent, presumably due to an absence of direct cation-anion interactions. The sodium-23, potassium-39 and cesium-133 chemical shifts of the salts studied depend on the anion and vary linearly with the concentration. The observed behavior can be accounted for by the formation of collisional ion pairs. On the other hand, the thallium-205 chemical shifts of thallium(I) nitrate and perchlorate were anion-dependent and varied non-linearly with the salt concentration. These results are indicative of contact ion pair formation; formation constants were calculated to be 2.6±0.4 M–1 for TlNO3 and 1.7±0.5 M–1 for TlClO4. The cesium-133 NMR spectra of several mixed electrolyte systems also have been measured in N-methylformamide solution. The133Cs chemical shifts also change linearly with the concentrations of the salts added to 0.10 M CsI/NMF solutions. The influence of the anions on the chemical shifts is the same as that observed for cesium salts alone. |
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Keywords: | N-Methylformamide alkali salts thallium(I) salts multinuclear NMR interionic interactions |
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