Quadrupolar relaxation effects in methyl-substituted ammonium ions as determined by 1H nuclear magnetic resonance

Nitrogen-14 quadrupole interactions broaden the 1 H nuclear magnetic resonances of the ammonium protons spin-coupled to 14 N in the methyl-substituted ammonium chlorides (methylammonium, dimethylammonium, and trimethylammonium). These proton lineshapes have been determined over the temperature range...

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Veröffentlicht in:Canadian journal of chemistry 1985-11, Vol.63 (11), p.2975-2978
Hauptverfasser: Halliday, James D, Bindner, Patrick E, Padamshi, Shahsultan
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Sprache:eng
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Zusammenfassung:Nitrogen-14 quadrupole interactions broaden the 1 H nuclear magnetic resonances of the ammonium protons spin-coupled to 14 N in the methyl-substituted ammonium chlorides (methylammonium, dimethylammonium, and trimethylammonium). These proton lineshapes have been determined over the temperature range −8.3 to +93.6 °C in 6 mol L −1 aqueous HCl solution. The 14 N spin-lifetimes, τ, have been calculated from the Arrhenius form equation In τ vs. 1/T (K), and yield activation energies of 10.63 ± 0.92, 10.60 ± 0.52, and 11.12 ± 0.39 kJ mol −1 for the mono-, di-, and tri-methyl species, respectively. The 14 N nmr linewidths have been extracted from these data and a comparison is made with 14 N nmr spectra obtained by Ogg and Ray.
ISSN:0008-4042
1480-3291
DOI:10.1139/v85-493