The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especially at elevated temperature, was studied in this work. The LFS powder was initially synthesized using a hydrothermal route and then aged at 60 °C for 40 days in LiPF6 and LiBF4-based electrolytes. The residual powder and the electrolyte were investigated afterwards. In the case of LiPF6, a structural and compositional change of LFS to Li2SiF6 was observed by XRD. SEM images confirmed that this change led to a morphology change of the aged material. XPS, EDX and ICP-OES measurements showed a large increase of fluorine content inside the residual powder. NMR investigations indicated an accelerated decomposition of electrolyte in the presence of ...
Lithium ion batteries (LIBs) have been successfully commercialized in a diverse mobile electronic de...
Accelerating rate calorimetry (ARC) was used to investigate the impact of delithiated Li0FePO4 on th...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especial...
The aging stability of several Li2FeSiO4 (LFS) polymorphs in LiPF6-based organic carbonate solvent e...
Lithium-ion batteries have been extensively investigated as power sources for electric vehicles due ...
Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevate...
The thermal stability of lithium tetrafluorooxalatophosphate [LiPF 4(C2O4)] electrolyte was investig...
The state of the art lithium-ion batteries present in most portable electronics consist of the salt ...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
Thermal stability studies of electrolytes with mixtures of LiPF6 and LiBF4 were carried out using di...
LiMn2O4-based Li-ion cells suffer from a limited cycle-life and a poor storage performance at 55°C, ...
The thermal decomposition of LiPF6 in solution with carbonate solvents has been investigated. The th...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Li-ion batteries have a huge potential for use in electrification of the transportation sector. The ...
Lithium ion batteries (LIBs) have been successfully commercialized in a diverse mobile electronic de...
Accelerating rate calorimetry (ARC) was used to investigate the impact of delithiated Li0FePO4 on th...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
The stability vs. aging of Li2FeSiO4 (LFS) cathode material in fluorine-based electrolytes, especial...
The aging stability of several Li2FeSiO4 (LFS) polymorphs in LiPF6-based organic carbonate solvent e...
Lithium-ion batteries have been extensively investigated as power sources for electric vehicles due ...
Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevate...
The thermal stability of lithium tetrafluorooxalatophosphate [LiPF 4(C2O4)] electrolyte was investig...
The state of the art lithium-ion batteries present in most portable electronics consist of the salt ...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
Thermal stability studies of electrolytes with mixtures of LiPF6 and LiBF4 were carried out using di...
LiMn2O4-based Li-ion cells suffer from a limited cycle-life and a poor storage performance at 55°C, ...
The thermal decomposition of LiPF6 in solution with carbonate solvents has been investigated. The th...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Li-ion batteries have a huge potential for use in electrification of the transportation sector. The ...
Lithium ion batteries (LIBs) have been successfully commercialized in a diverse mobile electronic de...
Accelerating rate calorimetry (ARC) was used to investigate the impact of delithiated Li0FePO4 on th...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...