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Chemical Shift Standards in High-Resolution Solid-State NMR (1) 13C, 29Si, and 1H Nuclei
Bulletin of the Chemical Society of Japan · 1991 · Vol. 64(2) · pp. 685–687
Shigenobu Hayashi✉(National Chemical Laboratory)Kikuko Hayamizu(National Chemical Laboratory)
Abstract
Abstract The resonance frequencies of 13C, 29Si, and 1H nuclei in pure tetramethylsilane have been measured accurately by spinning the liquid sample at the magic angle, which are free from the effects of the bulk magnetic susceptibility and the solvent. Using the above resonance positions, the chemical shifts of several second shift-standard materials have been determined with much improved accuracy and precision.
Advanced NMR Techniques and ApplicationsSolid-state spectroscopy and crystallographyChemical Synthesis and CharacterizationTetramethylsilaneChemistryChemical shiftMagic angle spinningSolid-state nuclear magnetic resonanceHigh resolutionNuclear magnetic resonanceAnalytical Chemistry (journal)SpinningNuclear magnetic resonance spectroscopy
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