Computational methods are increasingly used to support interpreting, assigning and predicting the solid-state nuclear resonance magnetic spectra of materials. Currently, density functional theory is seen to achieve a good balance between efficiency and accuracy in solid-state chemistry. To be specific, density functional theory allows the assignment of signals in nuclear resonance magnetic spectra to specific sites and can help identify overlapped or missing signals from experimental nuclear resonance magnetic spectra. To avoid the difficulties correlated to all-electron calculations, a gauge including the projected augmented wave method was introduced to calculate nuclear resonance magnetic parameters with great success in organic crystals...
Nuclear magnetic resonance (NMR) chemical shifts are a direct probe of local atomic environments and...
A method to calculate NMR J-coupling constants from first principles in extended systems is presente...
We present a scheme for the calculation of magnetic response parameters in insulators using ultrasof...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
International audienceThis article presents results of first-principles calculations of quadrupolar ...
We review the development of electronic structure methods for the calculation of nuclear magnetic re...
Nuclear magnetic resonance (NMR) chemical shifts play a large role in the structuralcharacterization...
International audienceIn this work, we present a quantum mechanics/molecular mechanics (QM/MM) appro...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
In this article, we introduce and apply a methodology, based on density functional theory and the ga...
Solid state NMR has been proven to be an efficient probe for identification, structure and dynamics ...
A method to calculate NMR J-coupling constants from first principles in extended systems is presente...
Nuclear magnetic resonance (NMR) chemical shifts are a direct probe of local atomic environments and...
Nuclear magnetic resonance (NMR) spectroscopy is one of the most powerful exper- imental tools to pr...
Nuclear magnetic resonance (NMR) chemical shifts are a direct probe of local atomic environments and...
A method to calculate NMR J-coupling constants from first principles in extended systems is presente...
We present a scheme for the calculation of magnetic response parameters in insulators using ultrasof...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
Computational methods are increasingly used to support interpreting, assigning and predicting the so...
International audienceThis article presents results of first-principles calculations of quadrupolar ...
We review the development of electronic structure methods for the calculation of nuclear magnetic re...
Nuclear magnetic resonance (NMR) chemical shifts play a large role in the structuralcharacterization...
International audienceIn this work, we present a quantum mechanics/molecular mechanics (QM/MM) appro...
Ab initio predictions of chemical shifts and electric field gradient (EFG) tensor components are fre...
In this article, we introduce and apply a methodology, based on density functional theory and the ga...
Solid state NMR has been proven to be an efficient probe for identification, structure and dynamics ...
A method to calculate NMR J-coupling constants from first principles in extended systems is presente...
Nuclear magnetic resonance (NMR) chemical shifts are a direct probe of local atomic environments and...
Nuclear magnetic resonance (NMR) spectroscopy is one of the most powerful exper- imental tools to pr...
Nuclear magnetic resonance (NMR) chemical shifts are a direct probe of local atomic environments and...
A method to calculate NMR J-coupling constants from first principles in extended systems is presente...
We present a scheme for the calculation of magnetic response parameters in insulators using ultrasof...