Understanding the origin of the high capacity displayed by Li 2MnO3-LiMO2 (M = Ni, Co) composites is essential for improving their cycling and rate capability performances. To address this issue, the Li2Ru1-yMnyO 3 series between the iso-structural layered end-members Li 2MnO3 and Li2RuO3 was investigated. A complete solid solution was found, with the 0.4 ≤ y ≤ 0.6 members showing sustainable reversible capacities exceeding 220 mAh·g -1 centered around 3.6 V vs Li+/Li. The voltage-composition profiles display a plateau on the first charge as compared to an S-type curve on subsequent discharge which is maintained on the following charges/discharges, with therefore a lowering of the average voltage. We show this profile to evolve upon long cy...
International audienceElectrode materials based on Li-rich layered oxides are of growing interest fo...
Peroxide structure O-2(n-) has proven to appear after electrochemical process in many lithium-excess...
Structural changes in Li2MnO3 cathode material for rechargeable Li-ion batteries are investigated du...
International audienceUnderstanding the origin of the high capacity displayed by Li2MnO3−LiMO2 (M = ...
Li2MO3-based layered structures play an important role in lithium rich composites to realize high en...
Conventional cathodes for Li-ion batteries are layered transition-metal oxides that support Li+ inte...
International audienceLi-ion batteries have contributed to the commercial success of portable electr...
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...
Layered lithium- and manganese-rich oxides (LMROs), described as xLi2MnO3·(1–x)LiMO2 or Li1+yM1–yO2 ...
The application of Li-rich layered oxides is hindered by their dramatic capacity and voltage decay o...
International audienceElectrode materials based on Li-rich layered oxides are of growing interest fo...
Peroxide structure O-2(n-) has proven to appear after electrochemical process in many lithium-excess...
Structural changes in Li2MnO3 cathode material for rechargeable Li-ion batteries are investigated du...
International audienceUnderstanding the origin of the high capacity displayed by Li2MnO3−LiMO2 (M = ...
Li2MO3-based layered structures play an important role in lithium rich composites to realize high en...
Conventional cathodes for Li-ion batteries are layered transition-metal oxides that support Li+ inte...
International audienceLi-ion batteries have contributed to the commercial success of portable electr...
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...
Layered lithium- and manganese-rich oxides (LMROs), described as xLi2MnO3·(1–x)LiMO2 or Li1+yM1–yO2 ...
The application of Li-rich layered oxides is hindered by their dramatic capacity and voltage decay o...
International audienceElectrode materials based on Li-rich layered oxides are of growing interest fo...
Peroxide structure O-2(n-) has proven to appear after electrochemical process in many lithium-excess...
Structural changes in Li2MnO3 cathode material for rechargeable Li-ion batteries are investigated du...