International audienceDynamic nuclear polarization (DNP) is a powerful way to overcome the sensitivity limitation of magic-angle-spinning (MAS) NMR experiments. However, the resolution of the DNPNMR spectra of proteins is compromised by severe line broadening associated with the necessity to perform experiments at cryogenic temperatures and in the presence of paramagnetic radicals. High-quality DNP-enhanced NMR spectra of the Acinetobacter phage 205 (AP205) nucleocapsid can be obtained by combining high magnetic field (800MHz) and fast MAS (40kHz). These conditions yield enhanced resolution and long coherence lifetimes allowing the acquisition of resolved 2D correlation spectra and of previously unfeasible scalar-based experiments. This ena...
We report remarkably high, up to 100-fold, signal enhancements in 19F dynamic nuclear polarization (...
Dynamic nuclear polarization (DNP) greatly improves the NMR sensitivity, but its implementation in a...
International audienceWe report a strategy to push the limits of solid-state NMR sensitivity far bey...
International audienceDynamic nuclear polarization (DNP) is a powerful way to overcome the sensitivi...
International audienceDynamic Nuclear Polarization (DNP) is an effective approach to alleviate the i...
Dynamic nuclear polarization (DNP) has become a powerful method to enhance spectroscopic sensitivity...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2001.Includes bibliograp...
Dynamic nuclear polarization (DNP) has the potential to enhance the sensitivity of magic-angle spinn...
International audienceSolid-state NMR spectroscopy (ssNMR) with magic-angle spinning (MAS) enables t...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
During the three decades 1980–2010, magic angle spinning (MAS) NMR developed into the method of choi...
International audienceSolid-state nuclear magnetic resonance under magic angle spinning (MAS) enhanc...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
The aim of the work presented here has been to optimize the sensitivity of nuclear magnetic resonanc...
The application of dynamic nuclear polarization (DNP) and magic angle spinning (MAS) significantly i...
We report remarkably high, up to 100-fold, signal enhancements in 19F dynamic nuclear polarization (...
Dynamic nuclear polarization (DNP) greatly improves the NMR sensitivity, but its implementation in a...
International audienceWe report a strategy to push the limits of solid-state NMR sensitivity far bey...
International audienceDynamic nuclear polarization (DNP) is a powerful way to overcome the sensitivi...
International audienceDynamic Nuclear Polarization (DNP) is an effective approach to alleviate the i...
Dynamic nuclear polarization (DNP) has become a powerful method to enhance spectroscopic sensitivity...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2001.Includes bibliograp...
Dynamic nuclear polarization (DNP) has the potential to enhance the sensitivity of magic-angle spinn...
International audienceSolid-state NMR spectroscopy (ssNMR) with magic-angle spinning (MAS) enables t...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
During the three decades 1980–2010, magic angle spinning (MAS) NMR developed into the method of choi...
International audienceSolid-state nuclear magnetic resonance under magic angle spinning (MAS) enhanc...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
The aim of the work presented here has been to optimize the sensitivity of nuclear magnetic resonanc...
The application of dynamic nuclear polarization (DNP) and magic angle spinning (MAS) significantly i...
We report remarkably high, up to 100-fold, signal enhancements in 19F dynamic nuclear polarization (...
Dynamic nuclear polarization (DNP) greatly improves the NMR sensitivity, but its implementation in a...
International audienceWe report a strategy to push the limits of solid-state NMR sensitivity far bey...