The accurate computational prediction of nuclear magnetic resonance (NMR) parameters like chemical shifts represents a challenge if the species studied is immersed in strongly polarizing environments such as water. Common approaches to treating a solvent in the form of, e.g., the polarizable continuum model (PCM) ignore strong directional interactions such as H-bonds to the solvent which can have substantial impact on magnetic shieldings. We here present a computational methodology that accounts for atomic-level solvent effects on NMR parameters by extending the embedded cluster reference interaction site model (EC-RISM) integral equation theory to the prediction of chemical shifts of <i>N</i>-methylacetamide (NMA) in aqueous solution. We e...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...
Nuclear Magnetic Resonance (NMR) spectroscopy is an indispensable structural tool in the modern anal...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...
The accurate computational prediction of nuclear magnetic resonance (NMR) parameters like chemical s...
We propose a new hybrid approach combining quantum chemistry and statistical mechanics of liquids fo...
This paper presents a study on the effects of solvents on nuclear magnetic shielding parameters deri...
A new method for calculating nuclear magnetic shielding in solutions is developed based on the refer...
We examine several computational strategies for the prediction of the O-17-NMR shielding constants f...
We examine several computational strategies for the prediction of the O-17-NMR shielding constants f...
International audienceWe examine several computational strategies for the prediction of the (17)O-NM...
The gas-to-aqueous solution shifts of the O-17 and C-13 NMR isotropic shielding constants for the ca...
We present the results of a computational study of the NMR properties of glycine in water solution a...
We present a density functional theory (DFT) study of solvent effects on nuclear magnetic shielding ...
High-pressure (HP) NMR spectroscopy is an important method for detecting rare functional states of p...
The magnetic shielding and its polarizabilities, have been calculated for tertiary butyl alcohol and...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...
Nuclear Magnetic Resonance (NMR) spectroscopy is an indispensable structural tool in the modern anal...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...
The accurate computational prediction of nuclear magnetic resonance (NMR) parameters like chemical s...
We propose a new hybrid approach combining quantum chemistry and statistical mechanics of liquids fo...
This paper presents a study on the effects of solvents on nuclear magnetic shielding parameters deri...
A new method for calculating nuclear magnetic shielding in solutions is developed based on the refer...
We examine several computational strategies for the prediction of the O-17-NMR shielding constants f...
We examine several computational strategies for the prediction of the O-17-NMR shielding constants f...
International audienceWe examine several computational strategies for the prediction of the (17)O-NM...
The gas-to-aqueous solution shifts of the O-17 and C-13 NMR isotropic shielding constants for the ca...
We present the results of a computational study of the NMR properties of glycine in water solution a...
We present a density functional theory (DFT) study of solvent effects on nuclear magnetic shielding ...
High-pressure (HP) NMR spectroscopy is an important method for detecting rare functional states of p...
The magnetic shielding and its polarizabilities, have been calculated for tertiary butyl alcohol and...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...
Nuclear Magnetic Resonance (NMR) spectroscopy is an indispensable structural tool in the modern anal...
This paper represents the second part of a study of solvation of peptides. As in the first part, N-m...