We present a scheme for the calculation of magnetic response parameters in insulators using ultrasoft pseudopotentials. It uses the gauge-including projector augmented wave method [C. J. Pickard and F. Mauri, Phys. Rev. B 63, 245101 (2001)] to obtain all-electron accuracy for both finite and infinitely periodic systems. We consider in detail the calculation of NMR chemical shieldings. The approach is successfully validated first for molecular systems by comparing calculated chemical shieldings for a range of molecules with quantum chemistry results and then in the solid state by comparing O-17 NMR parameters calculated for silicates with experiment
We introduce a method for the all-electron calculation of the NMR chemical shifts and the EPR g tens...
We propose a new hybrid approach combining quantum chemistry and statistical mechanics of liquids fo...
International audienceIn this work, we present a quantum mechanics/molecular mechanics (QM/MM) appro...
We present a scheme for the calculation of magnetic response parameters in insulators using ultrasof...
A theory for the ab initio calculation of all-electron NMR chemical shifts in insulators using pseud...
We adapt the DFT+U method in the gauge-including projector augmented-wave NMR chemical shift calcula...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
A DFT-based method is presented which allows the computation of all-electron NMR shifts of metallic ...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
We review the development of electronic structure methods for the calculation of nuclear magnetic re...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
A recently developed ab-initio method for the calculation of NMR chemical shifts and magnetic suscep...
We present a new method for computing NMR chemical shifts and magnetic susceptibilities in extended ...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
We introduce a method for the all-electron calculation of the NMR chemical shifts and the EPR g tens...
We propose a new hybrid approach combining quantum chemistry and statistical mechanics of liquids fo...
International audienceIn this work, we present a quantum mechanics/molecular mechanics (QM/MM) appro...
We present a scheme for the calculation of magnetic response parameters in insulators using ultrasof...
A theory for the ab initio calculation of all-electron NMR chemical shifts in insulators using pseud...
We adapt the DFT+U method in the gauge-including projector augmented-wave NMR chemical shift calcula...
56 pagesWe present a density functional theory based method for calculating NMR shielding tensors fo...
A DFT-based method is presented which allows the computation of all-electron NMR shifts of metallic ...
Two finite-field implementations for the calculation of chemical shieldings of molecular systems usi...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
We review the development of electronic structure methods for the calculation of nuclear magnetic re...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
A recently developed ab-initio method for the calculation of NMR chemical shifts and magnetic suscep...
We present a new method for computing NMR chemical shifts and magnetic susceptibilities in extended ...
We present a benchmark of the density functional linear response calculation of NMR shieldings withi...
We introduce a method for the all-electron calculation of the NMR chemical shifts and the EPR g tens...
We propose a new hybrid approach combining quantum chemistry and statistical mechanics of liquids fo...
International audienceIn this work, we present a quantum mechanics/molecular mechanics (QM/MM) appro...