This paper presents a theoretical, numerical, and experimental study of phase- and frequency-switched Lee-Goldburg cross-polarization (FSLG-CP) under magic-angle spinning conditions. It is shown that a well-defined amplitude modulation of one of the two radio-frequency (rf) fields in the FSLG-CP sequence results in highly efficient heteronuclear dipolar recoupling. The recoupled dipolar interaction is gamma-encoded and, under ideal conditions, the effective spin Hamiltonian is equivalent to that in continuous-wave Lee-Goldburg CP. In practice, however, FSLG-CP is less susceptible to rf field mismatch and inhomogeneity, and provides better suppression of (1)H spin diffusion. The performance of FSLG-CP is experimentally demonstrated on liquid...
The experimental performance of the phase modulated decoupling schemes SDROOPY-1 and SPINAL64 is inv...
A new method for polarization transfer between heteronuclei for static oriented samples is presented...
We examine the influence of continuous-wave heteronuclear decoupling on symmetry-based double-quantu...
Interference phenomena between sample spinning and radio frequency (RF) irradiation in solid state h...
This thesis deals with the development of new methodology for homonuclear dipolar recoupling by symm...
This thesis concerns the development of radio-frequency pulse sequences in magic-angle-spinning soli...
Two novel schemes are described for cross polarization in NMR that make it possible to achieve an ef...
We demonstrate a new set of methods for transferring spin polarization between different nuclear iso...
Cross polarisation is extensively used in solid state NMR for enhancing signals of nuclei with low g...
The proton–carbon polarization exchange in Lee–Goldburg cross-polarization magic angle spinning (LG-...
We investigate spin thermodynamic processes taking place during Hartmann–Hahn cross-polarization exp...
We introduce a family of solid-state NMR pulse sequences that generalizes the concept of second aver...
International audiencePolarization transfers are crucial building blocks in magnetic resonance exper...
The efficiency of magnetization transfer between different spins S such as chemically inequivalent c...
We describe a solid-state NMR concept for the estimation of individual spin–spin couplings in strong...
The experimental performance of the phase modulated decoupling schemes SDROOPY-1 and SPINAL64 is inv...
A new method for polarization transfer between heteronuclei for static oriented samples is presented...
We examine the influence of continuous-wave heteronuclear decoupling on symmetry-based double-quantu...
Interference phenomena between sample spinning and radio frequency (RF) irradiation in solid state h...
This thesis deals with the development of new methodology for homonuclear dipolar recoupling by symm...
This thesis concerns the development of radio-frequency pulse sequences in magic-angle-spinning soli...
Two novel schemes are described for cross polarization in NMR that make it possible to achieve an ef...
We demonstrate a new set of methods for transferring spin polarization between different nuclear iso...
Cross polarisation is extensively used in solid state NMR for enhancing signals of nuclei with low g...
The proton–carbon polarization exchange in Lee–Goldburg cross-polarization magic angle spinning (LG-...
We investigate spin thermodynamic processes taking place during Hartmann–Hahn cross-polarization exp...
We introduce a family of solid-state NMR pulse sequences that generalizes the concept of second aver...
International audiencePolarization transfers are crucial building blocks in magnetic resonance exper...
The efficiency of magnetization transfer between different spins S such as chemically inequivalent c...
We describe a solid-state NMR concept for the estimation of individual spin–spin couplings in strong...
The experimental performance of the phase modulated decoupling schemes SDROOPY-1 and SPINAL64 is inv...
A new method for polarization transfer between heteronuclei for static oriented samples is presented...
We examine the influence of continuous-wave heteronuclear decoupling on symmetry-based double-quantu...