We demonstrate new rotor synchronised pulse sequences for obtaining high-resolution H-1 NMR spectra in the presence of fast magic angle spinning (MAS). The new sequences exploit selection rules generated by appropriate synchronisation of the radio-frequency (rf) field modulations and the sample rotation. We show preliminary results demonstrating the feasibility of high-resolution proton NMR spectroscopy in the presence of fast MAS, and also demonstrate the resolution of H-1-C-13 J-couplings in the solid state
The paper studies a family of recoupling pulse sequences in magic angle spinning (MAS) solid state N...
International audienceWe investigate the optimal implementation of windowed LG4 decoupling for the d...
We investigate the optimal implementation of windowed LG4 decoupling for the direct acquisition of h...
This article reviews the large increase in applications of high-resolution 1H magic-angle spinning (...
Fast magic angle spinning (MAS) NMR spectroscopy is becoming increasingly important in structural an...
Under fast MAS conditions, techniques for <sup>1</sup>H signal selection and suppression, which have...
Under fast MAS conditions, techniques for 1H signal selection and suppression, which have originally...
Resolution in proton solid state magic angle sample spinning (MAS) NMR is limited by the intrinsical...
This thesis concerns the development of radio-frequency pulse sequences in magic-angle-spinning soli...
Modern solid-state NMR employs a range of rf pulse sequences for a variety of tasks. There are decou...
A detailed study of the factors determining the linewidth (and hence resolution) in H-1 solid-state ...
We present a proton-selective method to determine 17O-1H distances in organic, biological and biomim...
Solid-state magic-angle-spinning NMR pulse sequences which implement zero-quantum homonuclear dipola...
We demonstrate a pulse sequence using symmetry-based rotor-synchronised sequences for homonuclear di...
General symmetry principles for rotor-synchronized pulse sequences in magic-angle spinning solid-sta...
The paper studies a family of recoupling pulse sequences in magic angle spinning (MAS) solid state N...
International audienceWe investigate the optimal implementation of windowed LG4 decoupling for the d...
We investigate the optimal implementation of windowed LG4 decoupling for the direct acquisition of h...
This article reviews the large increase in applications of high-resolution 1H magic-angle spinning (...
Fast magic angle spinning (MAS) NMR spectroscopy is becoming increasingly important in structural an...
Under fast MAS conditions, techniques for <sup>1</sup>H signal selection and suppression, which have...
Under fast MAS conditions, techniques for 1H signal selection and suppression, which have originally...
Resolution in proton solid state magic angle sample spinning (MAS) NMR is limited by the intrinsical...
This thesis concerns the development of radio-frequency pulse sequences in magic-angle-spinning soli...
Modern solid-state NMR employs a range of rf pulse sequences for a variety of tasks. There are decou...
A detailed study of the factors determining the linewidth (and hence resolution) in H-1 solid-state ...
We present a proton-selective method to determine 17O-1H distances in organic, biological and biomim...
Solid-state magic-angle-spinning NMR pulse sequences which implement zero-quantum homonuclear dipola...
We demonstrate a pulse sequence using symmetry-based rotor-synchronised sequences for homonuclear di...
General symmetry principles for rotor-synchronized pulse sequences in magic-angle spinning solid-sta...
The paper studies a family of recoupling pulse sequences in magic angle spinning (MAS) solid state N...
International audienceWe investigate the optimal implementation of windowed LG4 decoupling for the d...
We investigate the optimal implementation of windowed LG4 decoupling for the direct acquisition of h...