Abstract Traditional nuclear magnetic resonance (NMR) spectroscopy relies on the versatile chemical information conveyed by spectra. To complement conventional NMR, Laplace NMR explores diffusion and relaxation phenomena to reveal details on molecular motions. Under a broad concept of ultrafast multidimensional Laplace NMR, here we introduce an ultrafast diffusion-relaxation correlation experiment enhancing the resolution and information content of corresponding 1D experiments as well as reducing the experiment time by one to two orders of magnitude or more as compared with its conventional 2D counterpart. We demonstrate that the method allows one to distinguish identical molecules in different physical environments and provides chemical r...
Abstract Ultrafast Laplace NMR (UF-LNMR), which is based on the spatial encoding of multidimensiona...
Nuclear magnetic resonance (NMR) spectroscopy is a powerful analytical technique for chemistry and b...
Multidimensional acquisitions play a central role in the progress and applications of nuclear magnet...
Abstract Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules....
Abstract This thesis focuses on the developement of novel ultrafast Laplace NMR (UF LNMR) methods. ...
Abstract Laplace nuclear magnetic resonance (NMR), dealing with NMR relaxation and diffusion experi...
Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules. The so-ca...
Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules. The so-ca...
Laplace NMR (LNMR) consists of relaxation and diffusion measurements providing detailed information ...
Laplace NMR (LNMR) consists of relaxation and diffusion measurements providing detailed information ...
Abstract Laplace NMR, consisting of diffusion and relaxation experiments, provides detailed informa...
Abstract Molecular exchange between different physical or chemical environments occurs due to either...
Abstract As a perfect complement to conventional NMR that aims for chemical structure elucidation, ...
Abstract The thesis aims to characterize extracellular vesicles (EVs) utilizing nuclear magnetic re...
Multidimensional NMR (nD NMR) spectroscopy is widely used in chemical and biochemical analyses. Conv...
Abstract Ultrafast Laplace NMR (UF-LNMR), which is based on the spatial encoding of multidimensiona...
Nuclear magnetic resonance (NMR) spectroscopy is a powerful analytical technique for chemistry and b...
Multidimensional acquisitions play a central role in the progress and applications of nuclear magnet...
Abstract Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules....
Abstract This thesis focuses on the developement of novel ultrafast Laplace NMR (UF LNMR) methods. ...
Abstract Laplace nuclear magnetic resonance (NMR), dealing with NMR relaxation and diffusion experi...
Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules. The so-ca...
Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules. The so-ca...
Laplace NMR (LNMR) consists of relaxation and diffusion measurements providing detailed information ...
Laplace NMR (LNMR) consists of relaxation and diffusion measurements providing detailed information ...
Abstract Laplace NMR, consisting of diffusion and relaxation experiments, provides detailed informa...
Abstract Molecular exchange between different physical or chemical environments occurs due to either...
Abstract As a perfect complement to conventional NMR that aims for chemical structure elucidation, ...
Abstract The thesis aims to characterize extracellular vesicles (EVs) utilizing nuclear magnetic re...
Multidimensional NMR (nD NMR) spectroscopy is widely used in chemical and biochemical analyses. Conv...
Abstract Ultrafast Laplace NMR (UF-LNMR), which is based on the spatial encoding of multidimensiona...
Nuclear magnetic resonance (NMR) spectroscopy is a powerful analytical technique for chemistry and b...
Multidimensional acquisitions play a central role in the progress and applications of nuclear magnet...