We show that triple-quantum–single-quantum (TQ–SQ) correlation spectra of crystalline and disordered solids can be obtained under MAS using pulse sequences based on through-bond J-couplings. The feasibility of the experiments in coupled spin-1/2 systems is demonstrated for fully 13C-labelled L-alanine and Pb3P4O13 crystalline compounds, considered as model three-spin and four-spin systems, respectively. In the case of phosphate glasses, we show that the obtained TQ–SQ correlation spectra provide an improved description of the glass forming network connectivities and of the chain length distribution in the disordered network
International audienceThe robustness of the refocused INADEQUATE MAS NMR pulse sequence for probing ...
We show how high-resolution NMR spectra can be obtained for solids for which the spectra are normall...
International audienceAs a local characterization technique endowed with atomic resolution, solid-st...
We show that triple-quantum-single-quantum (TQ-SQ) correlation spectra of crystalline and disordered...
We show that triple-quantum – single-quantum (TQ-SQ) correlation spectra of crystalline and disorder...
We show for the first time that it is possible to acquire high-resolution heteronuclear NMR correlat...
A double-zero quantum (DZQ)-refocused INADEQUATE experiment is introduced for J-based NMR correlatio...
The development of fast magic angle spinning (MAS) opened up an opportunity for the indirect detecti...
Multiple quantum-single quantum correlation experiments are employed for spectral simplification and...
AbstractThe NMR double-quantum response to a three-pulse sequence of dipolar coupled spin-1/2 pairs ...
A routinely used assumption when interpreting two-dimensional NMR spectra obtained with a commonly u...
We present a novel nuclear magnetic resonance experiment for establishing through-bond connectivity ...
Abstract In the context of improving J coupling measurements in disordered solids, strong coupling e...
The thesis describes the investigation of high-resolution MQ MAS NMR in rigid spin-1/2 systems. Form...
A new two-dimensional NMR carbon-proton chemical shift correlation experiment, the MAS-J-HMQC experi...
International audienceThe robustness of the refocused INADEQUATE MAS NMR pulse sequence for probing ...
We show how high-resolution NMR spectra can be obtained for solids for which the spectra are normall...
International audienceAs a local characterization technique endowed with atomic resolution, solid-st...
We show that triple-quantum-single-quantum (TQ-SQ) correlation spectra of crystalline and disordered...
We show that triple-quantum – single-quantum (TQ-SQ) correlation spectra of crystalline and disorder...
We show for the first time that it is possible to acquire high-resolution heteronuclear NMR correlat...
A double-zero quantum (DZQ)-refocused INADEQUATE experiment is introduced for J-based NMR correlatio...
The development of fast magic angle spinning (MAS) opened up an opportunity for the indirect detecti...
Multiple quantum-single quantum correlation experiments are employed for spectral simplification and...
AbstractThe NMR double-quantum response to a three-pulse sequence of dipolar coupled spin-1/2 pairs ...
A routinely used assumption when interpreting two-dimensional NMR spectra obtained with a commonly u...
We present a novel nuclear magnetic resonance experiment for establishing through-bond connectivity ...
Abstract In the context of improving J coupling measurements in disordered solids, strong coupling e...
The thesis describes the investigation of high-resolution MQ MAS NMR in rigid spin-1/2 systems. Form...
A new two-dimensional NMR carbon-proton chemical shift correlation experiment, the MAS-J-HMQC experi...
International audienceThe robustness of the refocused INADEQUATE MAS NMR pulse sequence for probing ...
We show how high-resolution NMR spectra can be obtained for solids for which the spectra are normall...
International audienceAs a local characterization technique endowed with atomic resolution, solid-st...