We present a benchmark of the density functional linear response calculation of NMR shieldings within the gauge-including projector-augmented-wave method against all-electron augmented-plane-wave+local-orbital and uncontracted Gaussian basis set results for NMR shieldings in molecular and solid state systems. In general, excellent agreement between the aforementioned methods is obtained. Scalar relativistic effects are shown to be quite large for nuclei in molecules in the deshielded limit. The small component makes up a substantial part of the relativistic corrections. Published by AIP Publishing.</p
The linear response within the elimination of the small component model (LRESC) is an insightful and...
This thesis examines three approximations that significantly reduce the computational time of t...
The recently proposed relativistic mapping between nuclear magnetic resonance (NMR) shielding and nu...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
An efficient method for the calculation of nuclear magnetic resonance (NMR) shielding tensors is pre...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
The nonrelativistic “Ramsey-Flygare relationship” is the most used procedure to obtain semiexperimen...
Nuclear magnetic resonance (NMR) spectroscopy is an essential analytic technique in chemical, pharma...
The prediction of nuclear magnetic resonance (NMR) shielding parameters for the N atom represents a ...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
We have extended the frozen-density embedding (FDE) scheme within density-functional theory [T. A. W...
The linear response within the elimination of the small component model (LRESC) is an insightful and...
This thesis examines three approximations that significantly reduce the computational time of t...
The recently proposed relativistic mapping between nuclear magnetic resonance (NMR) shielding and nu...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
An efficient method for the calculation of nuclear magnetic resonance (NMR) shielding tensors is pre...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
In this study, we benchmark density functional theory gauge-including projector-augmented-wave (GIPA...
The development and implementation of sum-over-states density-functional-perturbation theory (SOS-DF...
The nonrelativistic “Ramsey-Flygare relationship” is the most used procedure to obtain semiexperimen...
Nuclear magnetic resonance (NMR) spectroscopy is an essential analytic technique in chemical, pharma...
The prediction of nuclear magnetic resonance (NMR) shielding parameters for the N atom represents a ...
We present a systematic density functional investigation on the prediction of the C-13, N-15, O-17, ...
We have extended the frozen-density embedding (FDE) scheme within density-functional theory [T. A. W...
The linear response within the elimination of the small component model (LRESC) is an insightful and...
This thesis examines three approximations that significantly reduce the computational time of t...
The recently proposed relativistic mapping between nuclear magnetic resonance (NMR) shielding and nu...