Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyfluoride materials as cathodes in lithium-ion batteries. However, as has been discovered for many other Li-rich materials, the oxyfluorides suffer from extensive surface degradation, leading to severe capacity fading. In the case of Li$_{2}$VO$_{2}$F, we have previously determined this to be a result of detrimental reactions between an unstable surface layer and the organic electrolyte. Herein, we present the protection of Li$_{2}$VO$_{2}$F particles with AlF$_{3}$ surface modification, resulting in a much-enhanced capacity retention over 50 cycles. While the specific capacity for the untreated material drops below 100 mA h g$^{-1}$ after only 5...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Four differently prepared aluminum fluoride samples were tested as cathode materials for rechargeabl...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Manganese based disordered rocksalt systems have attracted attention as Co-free and high capacity ca...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
Cation disordered rock-salt lithium-excess oxides are promising candidate cathode materials for next...
The increased energy density in Li-ion batteries is particularly dependent on the cathode materials ...
The demand for high-performance lithium-ion batteries and thus efficient cathode materials is steadi...
Lithium-rich disordered rocksalts such as Li1.3Nb0.3Mn0.4O2 and Li2MnO2F are being investigated as h...
In the search for high energy density cathodes for next-generation lithium-ion batteries, the disord...
Lithium-rich transition metal disordered rock salt (DRS) oxyfluorides have the potential to lessen o...
Cation-disordered rocksalt (DRS) materials have shown good initial reversibility and facile Li$^{+}$...
Li-rich disordered rock-salt oxides such as Li$_{1.2}$Ni$_{1/3}$Ti$_{1/3}$Mo$_{2/15}$O$_{2}$ are rec...
Cation-disordered rocksalt (DRX) oxides are a promising new class of high-energy-density cathode mat...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Four differently prepared aluminum fluoride samples were tested as cathode materials for rechargeabl...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Manganese based disordered rocksalt systems have attracted attention as Co-free and high capacity ca...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
Cation disordered rock-salt lithium-excess oxides are promising candidate cathode materials for next...
The increased energy density in Li-ion batteries is particularly dependent on the cathode materials ...
The demand for high-performance lithium-ion batteries and thus efficient cathode materials is steadi...
Lithium-rich disordered rocksalts such as Li1.3Nb0.3Mn0.4O2 and Li2MnO2F are being investigated as h...
In the search for high energy density cathodes for next-generation lithium-ion batteries, the disord...
Lithium-rich transition metal disordered rock salt (DRS) oxyfluorides have the potential to lessen o...
Cation-disordered rocksalt (DRS) materials have shown good initial reversibility and facile Li$^{+}$...
Li-rich disordered rock-salt oxides such as Li$_{1.2}$Ni$_{1/3}$Ti$_{1/3}$Mo$_{2/15}$O$_{2}$ are rec...
Cation-disordered rocksalt (DRX) oxides are a promising new class of high-energy-density cathode mat...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Four differently prepared aluminum fluoride samples were tested as cathode materials for rechargeabl...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...