Magic-angle spinning is routinely used to average anisotropic interactions in solid-state nuclear magnetic resonance (NMR). Due to the fact that the homonuclear dipolar Hamiltonian of a strongly coupled spin system does not commute with itself at different time points during the rotation, second-order and higher-order terms lead to a residual dipolar line broadening in the observed resonances. Additional truncation of the residual broadening due to isotropic chemical-shift differences can be observed. We analyze the residual line broadening in coupled proton spin systems based on theoretical calculations of effective Hamiltonians up to third order using Floquet theory and compare these results to numerically obtained effective Hamiltonians ...
We describe a solid-state NMR concept for the estimation of individual spin–spin couplings in strong...
This thesis deals with the development of new methodology for homonuclear dipolar recoupling by symm...
A detailed study of the factors determining the linewidth (and hence resolution) in 1H solid-state m...
The homonuclear dipolar coupling is the internal spin interaction that contributes the most to the l...
Homonuclear decoupling sequences in solid-state nuclear magnetic resonance (NMR) under magic-angle s...
A detailed study of the factors determining the linewidth (and hence resolution) in H-1 solid-state ...
A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A...
A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of ≥100 kHz...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of ≥100 kHz...
Interference phenomena between sample spinning and radio frequency (RF) irradiation in solid state h...
Proton detected solid-state NMR under fast magic-angle-spinning (MAS) conditions is currently redefi...
Spin-state-selective excitation (S3E) experiments allow the selection of individual transitions in a...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of >= 100 k...
Complex spinning sidebands are observed in magic-angle-spin- tensor is the single-crystal NMR method...
We describe a solid-state NMR concept for the estimation of individual spin–spin couplings in strong...
This thesis deals with the development of new methodology for homonuclear dipolar recoupling by symm...
A detailed study of the factors determining the linewidth (and hence resolution) in 1H solid-state m...
The homonuclear dipolar coupling is the internal spin interaction that contributes the most to the l...
Homonuclear decoupling sequences in solid-state nuclear magnetic resonance (NMR) under magic-angle s...
A detailed study of the factors determining the linewidth (and hence resolution) in H-1 solid-state ...
A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A...
A solid-state NMR analogue of the solution-state residual dipolar coupling effect is demonstrated. A...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of ≥100 kHz...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of ≥100 kHz...
Interference phenomena between sample spinning and radio frequency (RF) irradiation in solid state h...
Proton detected solid-state NMR under fast magic-angle-spinning (MAS) conditions is currently redefi...
Spin-state-selective excitation (S3E) experiments allow the selection of individual transitions in a...
Recent developments in magic angle spinning (MAS) technology permit spinning frequencies of >= 100 k...
Complex spinning sidebands are observed in magic-angle-spin- tensor is the single-crystal NMR method...
We describe a solid-state NMR concept for the estimation of individual spin–spin couplings in strong...
This thesis deals with the development of new methodology for homonuclear dipolar recoupling by symm...
A detailed study of the factors determining the linewidth (and hence resolution) in 1H solid-state m...