In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPAW) chemical shieldings against molecular shieldings for which basis set completeness has been achieved [Jensen et al., Phys. Chem. Chem. Phys. 18, 21145 (2016)]. We demonstrate the importance of two-center corrections for GIPAW hydrogen shieldings. For the other nuclei studied, standard GIPAW is sufficiently accurate. We find that GIPAW can be pushed to closely approach the basis set limit. The only source of small inaccuracies lies in the contribution to the shielding that is caused by surface currents, which we estimate comparing GIPAW susceptibilities to converged molecular magnetizabilities. </p
The 1H and 13C isotropic Chemical shifts and the substituent effects thereof (with respect to adaman...
A method to approximate ab initio shielding constants is presented, in which the ab initio density m...
Differences in nuclear isotropic magnetic shieldings give rise to the chemical shifts measured in NM...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
Nuclear magnetic shieldings have been calculated at the density functional theory (DFT) level for st...
Contains fulltext : 169076.pdf (preprint version ) (Open Access)12 p
A recently developed methodology for calculating, analyzing, and visualizing nuclear magnetic shield...
We develop a methodology for calculating, analyzing, and visualizing nuclear magnetic shielding dens...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
This thesis examines three approximations that significantly reduce the computational time of t...
The H-1 and C-13 isotropic chemical shifts and the substituent effects thereof (with respect to adam...
The 1H and 13C isotropic Chemical shifts and the substituent effects thereof (with respect to adaman...
A method to approximate ab initio shielding constants is presented, in which the ab initio density m...
Differences in nuclear isotropic magnetic shieldings give rise to the chemical shifts measured in NM...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
Nuclear magnetic shieldings have been calculated at the density functional theory (DFT) level for st...
Contains fulltext : 169076.pdf (preprint version ) (Open Access)12 p
A recently developed methodology for calculating, analyzing, and visualizing nuclear magnetic shield...
We develop a methodology for calculating, analyzing, and visualizing nuclear magnetic shielding dens...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
This thesis examines three approximations that significantly reduce the computational time of t...
The H-1 and C-13 isotropic chemical shifts and the substituent effects thereof (with respect to adam...
The 1H and 13C isotropic Chemical shifts and the substituent effects thereof (with respect to adaman...
A method to approximate ab initio shielding constants is presented, in which the ab initio density m...
Differences in nuclear isotropic magnetic shieldings give rise to the chemical shifts measured in NM...