Solid-state nuclear magnetic resonance
Solid-state nuclear magnetic resonance (ssNMR) is a spectroscopy technique used to characterize atomic-level structure and dynamics in solid materials. ssNMR spectra are broader due to nuclear spin interactions which can be categorized as dipolar coupling, chemical shielding, quadrupolar interactions, and j-coupling. These interactions directly affect the lines shapes of experimental ssNMR spectra which can be seen in powder and dipolar patterns. There are many essential solid-state techniques alongside advanced ssNMR techniques that may be applied to elucidate the fundamental aspects of solid materials. ssNMR is often combined with magic angle spinning (MAS) to remove anisotropic interactions and improve the sensitivity of the technique. The applications of ssNMR further extend to biology and medicine.
Solid-state nuclear magnetic resonance - Wikipedia Jump to content From Wikipedia, the free encyclopedia Technique in spectroscopy Solid-state 900 MHz (21.1 T [ 1 ] ) NMR spectrometer at the Canadian National Ultrahigh-field NMR Facility for Solids Solid-state nuclear magnetic resonance ( ssNMR ) is a spectroscopy technique used to characterize atomic-level structure and dynamics in solid materials. ssNMR spectra are broader due to nuclear spin interactions which can be categorized as dipolar coupling , chemical shielding, quadrupolar interactions , and j-coupling . These interactions directly
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