Ni-rich layered oxide materials exhibit great prospects for practical applications in lithium-ion batteries due to their high specific capacity. However, the poor cycling performance and suboptimal rate performance have caused obstacles for their widespread application. Herein, we developed a gradient Zr element doping method based on the bulk gradient concentration of Ni-rich layered oxide material to reinforce the cycle stability and rate performance of the cathode. In particular, the orientations of the gradient Zr doping were achieved via coprecipitation in a positive or negative correlation between the concentrations of Zr and Ni, and it was revealed that the material behaves better when the Zr content is abundant in the core. The grad...
Lithium-ion batteries (LIBs) with high energy density, safety with longer service life, cost-effecti...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
Nickel-rich metal oxides have been widely pursued as promising cathode materials for high energy den...
The realization of high performance Ni-rich layered cathodes remains a challenge because of the mult...
Ni-rich cathodes exhibit appealing properties, such as high capacity density, low cost, and prominen...
In order to ameliorate the severe capacity fading of LiNi0.5Co0.2Mn0.3O2 cathode materials at elevat...
Abstract The typical co-precipitation method was adopted to synthesized the Li-excess Li1.20[Mn0.52−...
Structural degradation and surface chemical instability are dominant issues of Ni-rich layered catho...
Nickel-rich layered oxides (NLOs) exhibit great potential to meet the ever-growing demand for furthe...
Layer-structured Zr doped Li[Ni1/3Co1/3Mn1-x/3Zrx/3]O2 (0 ≤ x ≤ 0.05) were synthesized via slurry sp...
Ordered occupation of Ni ions in the Li ion layer (and vice versa) was observed in 0.4 mol % Zr-dope...
Coming from the global picture of climate change and the crucial need to reduce greenhouse gases the...
Mn-rich layered oxide materials have been considered as promising cathode materials for large scale ...
Battery performance, such as the rate capability and cycle stability Of lithium transition metal oxi...
Doping is indispensable for ensuring the long-term cycling stability of the Ni-rich layered cathodes...
Lithium-ion batteries (LIBs) with high energy density, safety with longer service life, cost-effecti...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
Nickel-rich metal oxides have been widely pursued as promising cathode materials for high energy den...
The realization of high performance Ni-rich layered cathodes remains a challenge because of the mult...
Ni-rich cathodes exhibit appealing properties, such as high capacity density, low cost, and prominen...
In order to ameliorate the severe capacity fading of LiNi0.5Co0.2Mn0.3O2 cathode materials at elevat...
Abstract The typical co-precipitation method was adopted to synthesized the Li-excess Li1.20[Mn0.52−...
Structural degradation and surface chemical instability are dominant issues of Ni-rich layered catho...
Nickel-rich layered oxides (NLOs) exhibit great potential to meet the ever-growing demand for furthe...
Layer-structured Zr doped Li[Ni1/3Co1/3Mn1-x/3Zrx/3]O2 (0 ≤ x ≤ 0.05) were synthesized via slurry sp...
Ordered occupation of Ni ions in the Li ion layer (and vice versa) was observed in 0.4 mol % Zr-dope...
Coming from the global picture of climate change and the crucial need to reduce greenhouse gases the...
Mn-rich layered oxide materials have been considered as promising cathode materials for large scale ...
Battery performance, such as the rate capability and cycle stability Of lithium transition metal oxi...
Doping is indispensable for ensuring the long-term cycling stability of the Ni-rich layered cathodes...
Lithium-ion batteries (LIBs) with high energy density, safety with longer service life, cost-effecti...
Ni-rich layered oxide cathodes are promising candidates to satisfy the increasing energy demand of l...
Nickel-rich metal oxides have been widely pursued as promising cathode materials for high energy den...