The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast new chemical space for the development of high energy density, low cost Li-ion cathodes. We develop a strategy for obtaining optimized compositions within this class of materials, exhibiting high capacity and energy density as well as good reversibility, by using a combination of low-valence transition metal redox and a high-valence redox active charge compensator, as well as fluorine substitution for oxygen. Furthermore, we identify a new constraint on high-performance compositions by demonstrating the necessity of excess Li capacity as a means of counteracting high-voltage tetrahedral Li formation, Li-binding by fluorine and the associated i...
Disordered rocksalt (DRX) materials are an emerging class of cathode materials for Li ion batteries....
In cation-disordered rocksalt Li-ion cathode materials, an excess of Li with respect to the transiti...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
Cation-disordered rocksalt (DRS) materials have shown good initial reversibility and facile Li$^{+}$...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
In cation-disordered rocksalt Li-ion cathode materials, an excess of Li with respect to the transiti...
Mn-based Li-excess cation-disordered rocksalt (DRX) oxyfluorides are promising candidates for next-g...
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...
Using both computations and experiments, we demonstrate that the performance of Li-excess cation-dis...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Cation-disordered rocksalts (DRXs) have emerged as a new class of high-capacity Li-ion cathode mater...
This work was supported by the Robert Bosch Corporation, Umicore Specialty Oxides and Chemicals, and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Disordered rocksalt (DRX) materials are an emerging class of cathode materials for Li ion batteries....
In cation-disordered rocksalt Li-ion cathode materials, an excess of Li with respect to the transiti...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
Cation-disordered rocksalt (DRS) materials have shown good initial reversibility and facile Li$^{+}$...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
In cation-disordered rocksalt Li-ion cathode materials, an excess of Li with respect to the transiti...
Mn-based Li-excess cation-disordered rocksalt (DRX) oxyfluorides are promising candidates for next-g...
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...
Using both computations and experiments, we demonstrate that the performance of Li-excess cation-dis...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Cation-disordered rocksalts (DRXs) have emerged as a new class of high-capacity Li-ion cathode mater...
This work was supported by the Robert Bosch Corporation, Umicore Specialty Oxides and Chemicals, and...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Disordered rocksalt (DRX) materials are an emerging class of cathode materials for Li ion batteries....
In cation-disordered rocksalt Li-ion cathode materials, an excess of Li with respect to the transiti...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...