Conventional cathodes for Li-ion batteries are layered transition-metal oxides that support Li+ intercalation charge-balanced by redox on the transition metals. Oxidation beyond one electron per transition metal can be achieved in Li-rich layered oxides by involving structural anions, which necessitates high voltages and complex charge compensation mechanisms convoluted by degradation reactions. We report a detailed structural and spectroscopic analysis of the multielectron material Li2Ru0.3Mn0.7O3, chosen due to its low Ru content. Ex situ and operando spectroscopic data over multiple cycles highlight the changing charge compensation mechanism. Notably, over half of the first-cycle capacity is attributed to O2 gas evolution and reversible ...
Li<sub>2</sub>Ru<sub>0.5</sub>Mn<sub>0.5</sub>O<sub>3</sub>, a high capacity lithium-rich layered ca...
International audienceThe reactivity of water with Li-rich layered Li2RuO3 and partial exchange of L...
Recent research has explored combining conventional transition-metal redox with anionic lattice oxyg...
Conventional cathodes for Li-ion batteries are layered transition-metal oxides that support Li+ inte...
Exploration of Li-rich transition-metal (TM) oxides with active anionic redox reaction has paved a p...
cited By 1International audienceThe demonstration of reversible anionic redox in Li-rich layered oxi...
International audienceUnderstanding the origin of the high capacity displayed by Li2MnO3−LiMO2 (M = ...
Understanding the origin of the high capacity displayed by Li 2MnO3-LiMO2 (M = Ni, Co) composites is...
International audienceElectrode materials based on Li-rich layered oxides are of growing interest fo...
Lithium rich layered materials are an interesting class of materials which exploit both anionic and ...
International audienceLi-rich layered oxides, e.g. Li[Li 0.20 Ni 0.13 Mn 0.54 Co 0.13 ]O 2 (LR-NMC),...
The application of Li-rich layered oxides is hindered by their dramatic capacity and voltage decay o...
Li<sub>2</sub>Ru<sub>0.5</sub>Mn<sub>0.5</sub>O<sub>3</sub>, a high capacity lithium-rich layered ca...
International audienceThe reactivity of water with Li-rich layered Li2RuO3 and partial exchange of L...
Recent research has explored combining conventional transition-metal redox with anionic lattice oxyg...
Conventional cathodes for Li-ion batteries are layered transition-metal oxides that support Li+ inte...
Exploration of Li-rich transition-metal (TM) oxides with active anionic redox reaction has paved a p...
cited By 1International audienceThe demonstration of reversible anionic redox in Li-rich layered oxi...
International audienceUnderstanding the origin of the high capacity displayed by Li2MnO3−LiMO2 (M = ...
Understanding the origin of the high capacity displayed by Li 2MnO3-LiMO2 (M = Ni, Co) composites is...
International audienceElectrode materials based on Li-rich layered oxides are of growing interest fo...
Lithium rich layered materials are an interesting class of materials which exploit both anionic and ...
International audienceLi-rich layered oxides, e.g. Li[Li 0.20 Ni 0.13 Mn 0.54 Co 0.13 ]O 2 (LR-NMC),...
The application of Li-rich layered oxides is hindered by their dramatic capacity and voltage decay o...
Li<sub>2</sub>Ru<sub>0.5</sub>Mn<sub>0.5</sub>O<sub>3</sub>, a high capacity lithium-rich layered ca...
International audienceThe reactivity of water with Li-rich layered Li2RuO3 and partial exchange of L...
Recent research has explored combining conventional transition-metal redox with anionic lattice oxyg...