Dynamic Nuclear Polarization (DNP) is currently one of the most efficient ways of enhancing sensitivity in solid-state NMR experiments. The DNP protocol consists in doping a sample with a small amount of para-magnetic species, typically nitroxide biradicals, and carrying out a magic-angle spinning (MAS) solid-state NMR experiment under microwave irradiation at around 100 K. Maximum theoretical enhancements that can be achieved this way reach 660, translating into the possibility of studying atomic-level composition of dilute surface species at picomolar concentrations that would be otherwise out of reach. Recent years wit-nessed very fast development of DNP instrumentation (high-power and high-frequency microwave sources, higher magnetic fi...
The aim of the work presented here has been to optimize the sensitivity of nuclear magnetic resonanc...
International audience ; Although nuclear magnetic resonance (NMR) can provide a wealth of informati...
WOS:000457012900010In this article, we describe an in-depth overview of the development of paramagne...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceThe recent trend of high-held (similar to 5-20 T), low-temperature (similar to...
International audienceThe recent trend of high-held (similar to 5-20 T), low-temperature (similar to...
Nuclear Magnetic Resonance (NMR) Spectroscopy provides a unique window into the atomic world, reveal...
Dynamic nuclear polarization (DNP)-enhanced solid-state NMR spectroscopy under magic-angle spinning ...
Many of the functions and applications of advanced materials result from their interfacial structure...
The aim of the work presented here has been to optimize the sensitivity of nuclear magnetic resonanc...
International audience ; Although nuclear magnetic resonance (NMR) can provide a wealth of informati...
WOS:000457012900010In this article, we describe an in-depth overview of the development of paramagne...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
International audienceSolid-state NMR spectroscopy is a powerful technique for the characterization ...
Solid-state nuclear magnetic resonance (NMR) is an essential tool for the study of biological solids...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceNMR spectroscopy (often in conjunction with diffraction methods) is the method...
International audienceThe recent trend of high-held (similar to 5-20 T), low-temperature (similar to...
International audienceThe recent trend of high-held (similar to 5-20 T), low-temperature (similar to...
Nuclear Magnetic Resonance (NMR) Spectroscopy provides a unique window into the atomic world, reveal...
Dynamic nuclear polarization (DNP)-enhanced solid-state NMR spectroscopy under magic-angle spinning ...
Many of the functions and applications of advanced materials result from their interfacial structure...
The aim of the work presented here has been to optimize the sensitivity of nuclear magnetic resonanc...
International audience ; Although nuclear magnetic resonance (NMR) can provide a wealth of informati...
WOS:000457012900010In this article, we describe an in-depth overview of the development of paramagne...