First principles calculations have been used to investigate the effect of fluorine substitution on the electrochemical properties of Li2VOSiO4 and LiFePO4. Several models of hypothetical LiVSiO4F and Li0.5FePO3.5F0.5 within the structure of the corresponding parent compounds have been analyzed. The computational results indicate that the lithium insertion voltage is largely controlled by the crystallographic site that fluorine ions occupy in the structure. In some models of LiVSiO4F and Li0.5FePO3.5F0.5 lithium deinsertion causes a too large M-F distance (indicative of M{single bond}F bond breaking), being the predicted lithium insertion voltage about 0.3 V lower than that of the parent compound. In the energetically most stable model of hy...
This thesis focuses broadly on characterizing and understanding the Li intercalation mechanism in ph...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
In a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as posit...
First principles calculations are used to anticipate the electrochemistry of polyoxoanionic material...
Low intrinsic electronic conductivity is the main disadvantage of LiFePO4 when used as a cathode mat...
For over 25 years, lithium iron phosphate (LiFePO4) has been a material of interest for Li-ion batte...
The search for new low cost, safe, and high capacity cathodes for lithium batteries has focused atte...
Li-ion batteries have contributed to the commercial success of portable electronics, and are now in ...
As a result of the extensive research and application of LiFePO4 (LFP) in the past > 20 years, th...
Recently, the LiFeSO 4F material has been reported as the highest potential Fe-based cathode materia...
International audienceRecently, the LiFeSO4F material has been reported as the highest potential Fe-...
International audienceLiVPO4F stands as an attractive positive electrode material for the next gener...
Parallel electrochemical reactions in low-voltage anode LiVO represent a fundamental barrier for ful...
Polyanion compounds have relatively low energy density compared to plain oxides as cathode materials...
We report the synthesis and detailed structural and chemical characterization including electrochemi...
This thesis focuses broadly on characterizing and understanding the Li intercalation mechanism in ph...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
In a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as posit...
First principles calculations are used to anticipate the electrochemistry of polyoxoanionic material...
Low intrinsic electronic conductivity is the main disadvantage of LiFePO4 when used as a cathode mat...
For over 25 years, lithium iron phosphate (LiFePO4) has been a material of interest for Li-ion batte...
The search for new low cost, safe, and high capacity cathodes for lithium batteries has focused atte...
Li-ion batteries have contributed to the commercial success of portable electronics, and are now in ...
As a result of the extensive research and application of LiFePO4 (LFP) in the past > 20 years, th...
Recently, the LiFeSO 4F material has been reported as the highest potential Fe-based cathode materia...
International audienceRecently, the LiFeSO4F material has been reported as the highest potential Fe-...
International audienceLiVPO4F stands as an attractive positive electrode material for the next gener...
Parallel electrochemical reactions in low-voltage anode LiVO represent a fundamental barrier for ful...
Polyanion compounds have relatively low energy density compared to plain oxides as cathode materials...
We report the synthesis and detailed structural and chemical characterization including electrochemi...
This thesis focuses broadly on characterizing and understanding the Li intercalation mechanism in ph...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
In a recent study, we showed by solid-state NMR that LiVPO4F, which is a promising material as posit...