A computational analysis of the Overhauser effect is reported for the proton, methyl carbon, and carbonyl carbon nuclei of liquid acetone doped with the nitroxide radical TEMPOL. A practical methodology for calculating the dynamic nuclear polarization (DNP) coupling factors by accounting for both dipole–dipole and Fermi-contact interactions is presented. The contribution to the dipolar spectral density function of nuclear spins that are not too far from TEMPOL is computed through classical molecular dynamics (MD) simulations, whereas the contribution of distant spins is included analytically. Fermi contacts are obtained by subjecting a few molecules from every MD snapshot to ab initio quantum mechanical calculations. Scalar interaction is f...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...
The temperature dependence of the water-proton dynamic nuclear polarization (DNP) enhancement from F...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...
This journal is © the Owner Societies 2015. A computational analysis of the Overhauser effect is rep...
Dynamic nuclear polarization (DNP) enables the substantial enhancement of the NMR signal intensity i...
A computational strategy for calibrating, validating and analyzing molecular dynamics (MD) simulatio...
Dynamic nuclear polarization (DNP) employs paramagnetic species to increase the NMR signal of nuclea...
Since its discovery, nuclear magnetic resonance (NMR) spectroscopy has been a vital tool for molecul...
Dynamic nuclear polarization (DNP) in solution is known since the early days of magnetic resonance t...
Dynamic nuclear polarization in the liquid state via Overhauser effect is enabled by the fluctuation...
Dynamic nuclear polarization (DNP) is a method to enhance the low sensitivity of nuclear magnetic re...
The direct enhancement of the 13C NMR signal of small molecules in solution through Overhauser-media...
The electron-nuclear Overhauser effect on spin ½ nuclei in solutions containing free radica...
We report a large variation in liquid DNP performance of up to a factor of about five in coupling fa...
Dynamic nuclear polarization (DNP) is a technique used to enhance signal intensities in NMR experime...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...
The temperature dependence of the water-proton dynamic nuclear polarization (DNP) enhancement from F...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...
This journal is © the Owner Societies 2015. A computational analysis of the Overhauser effect is rep...
Dynamic nuclear polarization (DNP) enables the substantial enhancement of the NMR signal intensity i...
A computational strategy for calibrating, validating and analyzing molecular dynamics (MD) simulatio...
Dynamic nuclear polarization (DNP) employs paramagnetic species to increase the NMR signal of nuclea...
Since its discovery, nuclear magnetic resonance (NMR) spectroscopy has been a vital tool for molecul...
Dynamic nuclear polarization (DNP) in solution is known since the early days of magnetic resonance t...
Dynamic nuclear polarization in the liquid state via Overhauser effect is enabled by the fluctuation...
Dynamic nuclear polarization (DNP) is a method to enhance the low sensitivity of nuclear magnetic re...
The direct enhancement of the 13C NMR signal of small molecules in solution through Overhauser-media...
The electron-nuclear Overhauser effect on spin ½ nuclei in solutions containing free radica...
We report a large variation in liquid DNP performance of up to a factor of about five in coupling fa...
Dynamic nuclear polarization (DNP) is a technique used to enhance signal intensities in NMR experime...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...
The temperature dependence of the water-proton dynamic nuclear polarization (DNP) enhancement from F...
Dynamic nuclear polarization (DNP) is an NMR sensitivity enhancement technique that mediates polariz...