Improved methods for quickly identifying neutral organic compounds and differentiation of analytes with similar chemical structures are widely needed. We report a new approach to effectively “fingerprint” neutral organic molecules by using <sup>19</sup>F NMR and molecular containers. The encapsulation of analytes induces characteristic up- or downfield shifts of <sup>19</sup>F resonances that can be used as multidimensional parameters to fingerprint each analyte. The strategy can be achieved either with an array of fluorinated receptors or by incorporating multiple nonequivalent fluorine atoms in a single receptor. Spatial proximity of the analyte to the <sup>19</sup>F is important to induce the most pronounced NMR shifts and is crucial in ...
Fragment-based lead discovery has become a fundamental approach to identify ligands that efficiently...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Sparse lipid fluorination enhances the lipids' 1H signal dispersion, enables clean molecular distinc...
Improved methods for quickly identifying neutral organic compounds and differentiation of analytes w...
Improved methods for quickly identifying neutral organic compounds and differentiation of analytes w...
Ligand-based 19F NMR screening is a highly effective and well-established hit-finding approach. The ...
Fragment screening performed with 19F NMR spectroscopy is becoming increasingly popular in drug dis...
Here we explore a variety of monofluorinated and trifluoromethyl reporters in an effort to derive op...
The binding of amphiphilic molecules to lipid bilayers is followed by ^(19)F NMR using chemical shif...
A novel strategy for the design of a fluorinated fragment library that takes into account the local ...
Nuclear Magnetic Resonance (NMR) is a technique with several advantages, such as high rapidity and e...
The ability to monitor the behavior of individual proteins in complex mixtures has many potential us...
A novel iodoacetamide label 4-perfluoro-tert-butyl-phenyliodoacetamide (PFP) containing nine fluorin...
Fluorine-19 NMR chemical shifts have been calculated for a wide variety of fluorinated organic molec...
Peptide nucleic acid (PNA) building blocks, bearing a fluorine sensor at C-5 of the uracil base [viz...
Fragment-based lead discovery has become a fundamental approach to identify ligands that efficiently...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Sparse lipid fluorination enhances the lipids' 1H signal dispersion, enables clean molecular distinc...
Improved methods for quickly identifying neutral organic compounds and differentiation of analytes w...
Improved methods for quickly identifying neutral organic compounds and differentiation of analytes w...
Ligand-based 19F NMR screening is a highly effective and well-established hit-finding approach. The ...
Fragment screening performed with 19F NMR spectroscopy is becoming increasingly popular in drug dis...
Here we explore a variety of monofluorinated and trifluoromethyl reporters in an effort to derive op...
The binding of amphiphilic molecules to lipid bilayers is followed by ^(19)F NMR using chemical shif...
A novel strategy for the design of a fluorinated fragment library that takes into account the local ...
Nuclear Magnetic Resonance (NMR) is a technique with several advantages, such as high rapidity and e...
The ability to monitor the behavior of individual proteins in complex mixtures has many potential us...
A novel iodoacetamide label 4-perfluoro-tert-butyl-phenyliodoacetamide (PFP) containing nine fluorin...
Fluorine-19 NMR chemical shifts have been calculated for a wide variety of fluorinated organic molec...
Peptide nucleic acid (PNA) building blocks, bearing a fluorine sensor at C-5 of the uracil base [viz...
Fragment-based lead discovery has become a fundamental approach to identify ligands that efficiently...
With the spectacular advancement of NMR techniques and the flourishing of fluorine chemistry allowin...
Sparse lipid fluorination enhances the lipids' 1H signal dispersion, enables clean molecular distinc...