As-prepared Li(Ni,Co)O2 with good electrochemical performance is an insulator with low degree of cation disorder, i.e. Li and (Ni,Co) are distributed on different and alternating layers. Lithium extraction in the first cycle induces an irreversible first-order phase transition into a metallic phase with a discontinuous change in the c/a ratio by 3.6% and an accompanied partial occupation of some of the vacant Li-sites by Ni-ions. The specific arrangement of those Ni-ions on Li-layers is proposed as a key feature for the good cycling behaviour of Li(Ni,Co)O2 based cathodes in rechargeable batteries
The demand for energy sources with high energy densities continues to push the limits of Ni-rich lay...
Although layered lithium nickel-rich oxides have become the state-of-the-art cathode materials for l...
High-energy electrode materials are under worldwide development for rechargeable lithium batteries t...
As-prepared Li(Ni,Co)O2 with good electrochemical performance is an insulator with low degree of cat...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Ni-rich Li[Ni1-xMx]O2 (M = metals) have attracted much interest as lithium storage materials for rec...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
Lix0(Co,M)O2 (M = Ni, Mg ; x0 ≥ 1.0) materials used as positive electrode for Li-ion batteries have ...
Cathode materials that can cycle >1 Li<sup>+</sup> per transition metal are of substantial interest ...
To understand what and how structural properties affect battery performance, and to optimize the str...
Owing to high specific capacity of ∼250 mA h g<sup>–1</sup>, lithium-rich layered oxide cathode mate...
Layered lithium nickel-rich oxides, Li[Ni(1-x)M(x)]O(2) (M = metal), have attracted significant inte...
Li-rich layered oxide materials are promising candidates for high-energy Li-ion batteries. They show...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
Ni-rich layered oxides are the most promising cathode materials for Li-ion batteries due to their hi...
The demand for energy sources with high energy densities continues to push the limits of Ni-rich lay...
Although layered lithium nickel-rich oxides have become the state-of-the-art cathode materials for l...
High-energy electrode materials are under worldwide development for rechargeable lithium batteries t...
As-prepared Li(Ni,Co)O2 with good electrochemical performance is an insulator with low degree of cat...
Compared with LiCoO2, the dominant cathode material in today's lithium batteries, lithium nickel oxi...
Ni-rich Li[Ni1-xMx]O2 (M = metals) have attracted much interest as lithium storage materials for rec...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
Lix0(Co,M)O2 (M = Ni, Mg ; x0 ≥ 1.0) materials used as positive electrode for Li-ion batteries have ...
Cathode materials that can cycle >1 Li<sup>+</sup> per transition metal are of substantial interest ...
To understand what and how structural properties affect battery performance, and to optimize the str...
Owing to high specific capacity of ∼250 mA h g<sup>–1</sup>, lithium-rich layered oxide cathode mate...
Layered lithium nickel-rich oxides, Li[Ni(1-x)M(x)]O(2) (M = metal), have attracted significant inte...
Li-rich layered oxide materials are promising candidates for high-energy Li-ion batteries. They show...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
Ni-rich layered oxides are the most promising cathode materials for Li-ion batteries due to their hi...
The demand for energy sources with high energy densities continues to push the limits of Ni-rich lay...
Although layered lithium nickel-rich oxides have become the state-of-the-art cathode materials for l...
High-energy electrode materials are under worldwide development for rechargeable lithium batteries t...