International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as positive electrode for Li-ion batteries, often exhibits some defects that may affect its electrochemical behavior. In this paper, we use DFT calculations based on the projector augmented-wave (PAW) method in order to model possible defects in this (paramagnetic) material and to compute the Fermi contact shifts expected for Li nuclei located in their proximity. The advantage of the PAW approach versus FP-LAPW we have been previously using is that it allows considering large supercells suitable to model a diluted defect. In the first part of this paper, we aim to validate the Fermi contact shifts calculation using the PAW appro...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
In a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as posit...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
In a recent study, we showed by solid-state NMR that LiVPO<sub>4</sub>F, which is a promising materi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
In a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as posit...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
In a recent study, we showed by solid-state NMR that LiVPO<sub>4</sub>F, which is a promising materi...
International audienceIn a recent study, we showed by solid-state NMR that LiVPO4F, which is a promi...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...
International audienceIdentifying and characterizing defects in crystalline solids is a challenging ...