International audienceHerein, we report a detailed study on the high-energy density nanostructured Li4−xMn2O5–Li2O composite with a high discharge capacity of 355 mA h g−1, constituting the highest value reported to date for a lithium–manganese oxide electrode. Its high capacity was previously wrongly attributed to the participation of Li4−xMn2O5 (Li4) alone. However, more detailed compositional, structural, and electrochemical analyses revealed the important role played by Li2O during battery cycling that was able to increase the original capacity of Li4 by 100 mA h g−1. The participation of Li2O is evident during the first charge when it is mixed on the nanoscale with lithiated manganese oxide. The fully delithiated phase Li0 is formed af...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe search for new materials that could improve the energy density of Li-ion b...
International audienceThe search for new materials that could improve the energy density of Li-ion b...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
The electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93Li3.6–xMn2.4O5.4–0.07L...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe search for new materials that could improve the energy density of Li-ion b...
International audienceThe search for new materials that could improve the energy density of Li-ion b...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
International audienceHerein, we report a detailed study on the high-energy density nanostructured L...
The electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93Li3.6–xMn2.4O5.4–0.07L...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe electrochemical performance of nanostructured Li4Mn2O5 (or rather the 0.93...
International audienceThe search for new materials that could improve the energy density of Li-ion b...
International audienceThe search for new materials that could improve the energy density of Li-ion b...