International audienceAlthough Li-rich layered oxides (Li1+xNiyCozMn1−x−y−zO2 > 250 mAh g−1) are attractive electrode materials providing energy densities more than 15% higher than today’s commercial Li-ion cells, they suffer from voltage decay on cycling. To elucidate the origin of this phenomenon, we employ chemical substitution in structurally related Li2RuO3 compounds. Li-rich layered Li2Ru1−yTiyO3 phases with capacities of ~240 mAh g−1 exhibit the characteristic voltage decay on cycling. A combination of transmission electron microscopy and X-ray photoelectron spectroscopy studies reveals that the migration of cations between metal layers and Li layers is an intrinsic feature of the charge–discharge process that increases the trapping ...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Exploration of Li-rich transition-metal (TM) oxides with active anionic redox reaction has paved a p...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
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...
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) suffer f...
Lithium-rich layered oxides are considered as promising cathode materials for Li-ion batteries with ...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, > 250 mAh g(-1)) suffe...
textLi-ion batteries are widely used in electronics and automotives. Despite their success, improve...
textLi-ion batteries are widely used in electronics and automotives. Despite their success, improve...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Exploration of Li-rich transition-metal (TM) oxides with active anionic redox reaction has paved a p...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
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...
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) suffer f...
Lithium-rich layered oxides are considered as promising cathode materials for Li-ion batteries with ...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, > 250 mAh g(-1)) suffe...
textLi-ion batteries are widely used in electronics and automotives. Despite their success, improve...
textLi-ion batteries are widely used in electronics and automotives. Despite their success, improve...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Lithium-rich layered oxides are promising candidate cathode materials for the Li-ion batteries with ...
Exploration of Li-rich transition-metal (TM) oxides with active anionic redox reaction has paved a p...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...