A refocused INEPT through-bond coherence transfer technique is demonstrated for NMR of rigid organic solids and is shown to provide a valuable building block for the development of NMR correlation experiments in biological solids. The use of efficient proton homonuclear dipolar decoupling in combination with a direct spectral optimization procedure provides minimization of the transverse dephasing of coherences and leads to very efficient through-bond H-1-C-13 INEPT transfer for crystalline organic compounds. Application of this technique to 2D heteronuclear correlation spectroscopy leads to up to a factor of 3 increase in sensitivity for a carbon-13 enriched sample in comparison to standard through-bond experiments and provides excellent s...
The determination of protein solution structures by NMR requires complete as-signment of both the ba...
We present a novel nuclear magnetic resonance experiment for establishing through-bond connectivity ...
The power of NMR as a site-specific probe of structure and dynamics is principally a consequence, on...
International audienceA refocused INEPT through-bond coherence transfer technique is demonstrated fo...
International audienceA refocused INEPT through-bond coherence transfer technique is demonstrated fo...
International audienceA two-dimensional proton-mediated carbon-carbon correlation experiment that re...
International audienceA two-dimensional proton-mediated carbon-carbon correlation experiment that re...
Solid state NMR Spectroscopy is emerging as a mainstream tool in structural biology. Resonance assig...
A new two-dimensional NMR carbon-proton chemical shift correlation experiment, the MAS-J-HMQC experi...
Solid-state NMR (SSNMR) studies on biomolecules and organic molecular crystals are presented here. T...
Solid-state NMR spectroscopy is emerging as a mainstream tool in structural biology due to its uniqu...
The development of fast magic angle spinning (MAS) opened up an opportunity for the indirect detecti...
We introduce a new experiment, which makes use of Spin State Selective manipulations to perform sens...
Two-dimensional correlation spectroscopy in solid-state NMR is an immensely important tool for the a...
HNCO/HNCACO type correlation experiments are an alternative for assignment of backbone resonances in...
The determination of protein solution structures by NMR requires complete as-signment of both the ba...
We present a novel nuclear magnetic resonance experiment for establishing through-bond connectivity ...
The power of NMR as a site-specific probe of structure and dynamics is principally a consequence, on...
International audienceA refocused INEPT through-bond coherence transfer technique is demonstrated fo...
International audienceA refocused INEPT through-bond coherence transfer technique is demonstrated fo...
International audienceA two-dimensional proton-mediated carbon-carbon correlation experiment that re...
International audienceA two-dimensional proton-mediated carbon-carbon correlation experiment that re...
Solid state NMR Spectroscopy is emerging as a mainstream tool in structural biology. Resonance assig...
A new two-dimensional NMR carbon-proton chemical shift correlation experiment, the MAS-J-HMQC experi...
Solid-state NMR (SSNMR) studies on biomolecules and organic molecular crystals are presented here. T...
Solid-state NMR spectroscopy is emerging as a mainstream tool in structural biology due to its uniqu...
The development of fast magic angle spinning (MAS) opened up an opportunity for the indirect detecti...
We introduce a new experiment, which makes use of Spin State Selective manipulations to perform sens...
Two-dimensional correlation spectroscopy in solid-state NMR is an immensely important tool for the a...
HNCO/HNCACO type correlation experiments are an alternative for assignment of backbone resonances in...
The determination of protein solution structures by NMR requires complete as-signment of both the ba...
We present a novel nuclear magnetic resonance experiment for establishing through-bond connectivity ...
The power of NMR as a site-specific probe of structure and dynamics is principally a consequence, on...