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- W2022461564 endingPage "175" @default.
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- W2022461564 abstract "This chapter discusses the recent progress in solid-state nuclear magnetic resonance (NMR) of low-γ nuclei. The chapter examines the background to the difficulties of studying nuclei with small magnetic moments by solid-state NMR, and details such work as has been carried out on them. One of the key factors in making low-γ nuclei more accessible is improving the sensitivity. The most direct way is by the application of ever higher magnetic fields. The most common experiment in Fourier transform (FT) NMR is the application of a single pulse followed by acquisition of the free induction decay (FID). This is the most direct way of performing an FT NMR experiment; but there are many potential pitfalls. Those that are particularly relevant to low-γ nuclei relate to effects that corrupt the start of the FID. Various pulse sequences have been derived to remove the baseline distortions introduced by deadtime and ringing. The principle of most of these approaches is that signal and artefacts show differing coherence with the pulses, so that, with a suitable combination of pulses and phase cycling, artefacts cancel." @default.
- W2022461564 created "2016-06-24" @default.
- W2022461564 creator A5017215156 @default.
- W2022461564 date "2001-01-01" @default.
- W2022461564 modified "2023-09-24" @default.
- W2022461564 title "Recent progress in solid-state NMR of low-γ nuclei" @default.
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