Density functional theory (DFT) is used extensively for the first-principles calculation of hyperfine coupling constants in both main-group and transition metal systems. As with many other properties, the performance of DFT for hyperfine coupling constants is of variable quality, particularly for transition metal complexes, because it strongly depends on the nature of the chemical system and the type of approximation to the exchange-correlation functional. Recently, a meta-generalized-gradient approximation (mGGA) functional was proposed that obeys all known exact constraints for such a method, known as the Strongly Constrained and Appropriately Normed (SCAN) functional. In view of its theoretically superior formulation a benchmark set of c...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
A set of 41 metal−ligand bond distances in 25 third-row transition-metal complexes, for which precis...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accur...
International audienceThe performance of modern density functionals for the prediction of molecular ...
Different approaches are compared for relativistic density functional theory (DFT) and Hartree–Fock ...
International audienceThe reliable prediction of Cu(II) hyperfine coupling constants remains a chall...
Density functional theory (DFT) calculations of molecular hyperfine tensors were implemented as a se...
This paper focuses on the calculation of the (isotropic) hyperfine coupling tensor, <b>A</b><sub>iso...
A set of 41 metal-ligand bond distances in 25 third-row transition-metal complexes, for which precis...
Kohn-Sham density functional theory (DFT) is the most widely-used method for quantum chemical calcul...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Density Functional Theory has become very widely used to study the electronic structure and related ...
This work evaluates the efficiency of economic levels of theory for the prediction of (3)J(HH) spin-...
Recently developed parameters for five first-row transition-metal elements (M = Sc, Ti, Fe, Co, and ...
Local hybrid functionals are a more flexible class of density functional approximations, allowing fo...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
A set of 41 metal−ligand bond distances in 25 third-row transition-metal complexes, for which precis...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accur...
International audienceThe performance of modern density functionals for the prediction of molecular ...
Different approaches are compared for relativistic density functional theory (DFT) and Hartree–Fock ...
International audienceThe reliable prediction of Cu(II) hyperfine coupling constants remains a chall...
Density functional theory (DFT) calculations of molecular hyperfine tensors were implemented as a se...
This paper focuses on the calculation of the (isotropic) hyperfine coupling tensor, <b>A</b><sub>iso...
A set of 41 metal-ligand bond distances in 25 third-row transition-metal complexes, for which precis...
Kohn-Sham density functional theory (DFT) is the most widely-used method for quantum chemical calcul...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Density Functional Theory has become very widely used to study the electronic structure and related ...
This work evaluates the efficiency of economic levels of theory for the prediction of (3)J(HH) spin-...
Recently developed parameters for five first-row transition-metal elements (M = Sc, Ti, Fe, Co, and ...
Local hybrid functionals are a more flexible class of density functional approximations, allowing fo...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
A set of 41 metal−ligand bond distances in 25 third-row transition-metal complexes, for which precis...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accur...