Efficient solvent suppression with adiabatic inversion for 1 H-detected solid-state NMR

This study introduces a conceptually new solvent suppression scheme with adiabatic inversion pulses for H-detected multidimensional solid-state NMR (SSNMR) of biomolecules and other systems, which is termed "Solvent suppression of Liquid signal with Adiabatic Pulse" (SLAP). H-detected 2D C...

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Veröffentlicht in:Journal of biomolecular NMR 2021-12, Vol.75 (10-12), p.365
Hauptverfasser: Matsunaga, Tatsuya, Okabe, Ryotaro, Ishii, Yoshitaka
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Sprache:eng
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Zusammenfassung:This study introduces a conceptually new solvent suppression scheme with adiabatic inversion pulses for H-detected multidimensional solid-state NMR (SSNMR) of biomolecules and other systems, which is termed "Solvent suppression of Liquid signal with Adiabatic Pulse" (SLAP). H-detected 2D C/ H SSNMR data of uniformly C- and N-labeled GB1 sample using ultra-fast magic angle spinning at a spinning rate of 60 kHz demonstrated that the SLAP scheme showed up to 3.5-fold better solvent suppression performance over a traditional solvent-suppression scheme for SSNMR, MISSISSIPPI (Zhou and Rienstra, J Magn Reson 192:167-172, 2008) with 2/3 of the average RF power.
ISSN:1573-5001