Among the different fields of research in nuclear magnetic resonance (NMR) which are currently investigated in the Laboratory of Biomolecular Magnetic Resonance (LRMB), two subjects that are closely related to each other are presented in this article. On the one hand, we show how to populate long-lived states (LLS) that have long lifetimes T_LLS which allow one to go beyond the usual limits imposed by the longitudinal relaxation time T_1. This makes it possible to extend NMR experiments to longer time-scales. As an application, we demonstrate the extension of the timescale of diffusion measurements by NMR spectroscopy. On the other hand, we review our work on long-lived coherences (LLC), a particular type of coherence between two spin state...
Long-lived coherences (LLCs) in homonuclear pairs of chemically inequivalent spins can be excited an...
A drastic reduction of the time required for two-dimensional NMR experiments can be achieved by redu...
International audience ; New experiments are described for the determination of very slow diffusion ...
Among the different fields of research in nuclear magnetic resonance (NMR) which are currently inves...
International audienceLine broadening, which can arise from inhomogeneities or homogeneous relaxatio...
International audience ; Line broadening, which can arise from inhomogeneities or homogeneous relaxa...
ABSTRACT: Nuclear magnetic resonance is a powerful nonintrusive technique for measuring diffusion co...
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are supremely important techni...
Nuclear magnetic resonance (NMR) experiments are time-limited by relaxation dynamics. Observing non-...
Relaxation dispersion nuclear magnetic resonance (NMR) spectroscopy has been developed since the 195...
Long-lived states (LLS), also known as singlet states, have been widely studied in the last decade. ...
The phase time coupling effect on NMR relaxation is investigated based on coupled and uncoupled phas...
AbstractLong-lived states (LLS), also known as singlet states, have been widely studied in the last ...
International audience ; Long-lived coherences (LLCs) in homonuclear pairs of chemically inequivalen...
A novel NMR approach allows one to efficiently determine translational diffusion coefficients of mac...
Long-lived coherences (LLCs) in homonuclear pairs of chemically inequivalent spins can be excited an...
A drastic reduction of the time required for two-dimensional NMR experiments can be achieved by redu...
International audience ; New experiments are described for the determination of very slow diffusion ...
Among the different fields of research in nuclear magnetic resonance (NMR) which are currently inves...
International audienceLine broadening, which can arise from inhomogeneities or homogeneous relaxatio...
International audience ; Line broadening, which can arise from inhomogeneities or homogeneous relaxa...
ABSTRACT: Nuclear magnetic resonance is a powerful nonintrusive technique for measuring diffusion co...
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) are supremely important techni...
Nuclear magnetic resonance (NMR) experiments are time-limited by relaxation dynamics. Observing non-...
Relaxation dispersion nuclear magnetic resonance (NMR) spectroscopy has been developed since the 195...
Long-lived states (LLS), also known as singlet states, have been widely studied in the last decade. ...
The phase time coupling effect on NMR relaxation is investigated based on coupled and uncoupled phas...
AbstractLong-lived states (LLS), also known as singlet states, have been widely studied in the last ...
International audience ; Long-lived coherences (LLCs) in homonuclear pairs of chemically inequivalen...
A novel NMR approach allows one to efficiently determine translational diffusion coefficients of mac...
Long-lived coherences (LLCs) in homonuclear pairs of chemically inequivalent spins can be excited an...
A drastic reduction of the time required for two-dimensional NMR experiments can be achieved by redu...
International audience ; New experiments are described for the determination of very slow diffusion ...