Recent successes with disordered Li-excess materials and applications of percolation theory have highlighted cation-disordered oxides as high capacity and energy density cathode materials. In this work, we present a new class of high capacity cation-disordered oxides, lithium-excess nickel titanium molybdenum oxides, which deliver capacities up to 250 mA h g(-1). These materials were designed from percolation theory which predicts lithium diffusion to become facile in cation-disordered oxides as the lithium-excess level increases (x > 1.09 in LixTM2-xO2). The reversible capacity and rate capability in these compounds are shown to considerably improve with lithium excess. In particular, Li1.2Ni1/3Ti1/3Mo2/15O2 delivers up to 250 mA h g(-1...
Li-rich disordered rock-salt oxides such as Li$_{1.2}$Ni$_{1/3}$Ti$_{1/3}$Mo$_{2/15}$O$_{2}$ are rec...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...
Recent successes with disordered Li-excess materials and applications of percolation theory have hig...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Lithium-rich oxides are attracting intense interest as the next generation cathode materials for lit...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Nearly all high energy density cathodes for rechargeable lithium batteries are well-ordered material...
Nearly all high-energy density cathodes for rechargeable lithium batteries are well-ordered material...
Li-rich disordered rock-salt oxides such as Li1.2Ni1/3Ti1/3Mo2/15O2 are receiving increasing attenti...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
Li-rich disordered rock-salt oxides such as Li$_{1.2}$Ni$_{1/3}$Ti$_{1/3}$Mo$_{2/15}$O$_{2}$ are rec...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...
Recent successes with disordered Li-excess materials and applications of percolation theory have hig...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Recent progress in the understanding of percolation theory points to cation-disordered lithium-exces...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Lithium-rich oxides are attracting intense interest as the next generation cathode materials for lit...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Nearly all high energy density cathodes for rechargeable lithium batteries are well-ordered material...
Nearly all high-energy density cathodes for rechargeable lithium batteries are well-ordered material...
Li-rich disordered rock-salt oxides such as Li1.2Ni1/3Ti1/3Mo2/15O2 are receiving increasing attenti...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
Li-rich disordered rock-salt oxides such as Li$_{1.2}$Ni$_{1/3}$Ti$_{1/3}$Mo$_{2/15}$O$_{2}$ are rec...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...
The development of Li-excess disordered-rocksalt (DRX) cathodes for Li-ion batteries and interpretat...