Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer from severe voltage decay upon cycling, which decreases energy density and hinders further research and development. Nevertheless, the lack of understanding on chemical and structural uniqueness of the material prevents the interpretation of internal degradation chemistry. Here, we discover a fundamental reason of the voltage decay phenomenon by comparing ordered and cation-disordered materials with a combination of X-ray absorption spectroscopy and transmission electron microscopy studies. The cation arrangement determines the transition metal-oxygen covalency and structural reversibility related to voltage decay. The identification of struct...
ABSTRACT: Dynamic structural changes during the first electrochemical charge and discharge cycle in ...
Lithium-rich layered oxides (LrLOs) deliver extremely high specific capacities and are considered to...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, > 250 mAh g(-1)) suffe...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Defects and their interactions in crystalline solids often underpin material properties and function...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
ABSTRACT: Dynamic structural changes during the first electrochemical charge and discharge cycle in ...
Lithium-rich layered oxides (LrLOs) deliver extremely high specific capacities and are considered to...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, > 250 mAh g(-1)) suffe...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are att...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Defects and their interactions in crystalline solids often underpin material properties and function...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
Archetypical layered oxide with oxygen redox capability bears an additional lithium ion in a transit...
Cation disorder is a phenomenon that is becoming increasingly important for the design of high-energ...
ABSTRACT: Dynamic structural changes during the first electrochemical charge and discharge cycle in ...
Lithium-rich layered oxides (LrLOs) deliver extremely high specific capacities and are considered to...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...