We performed a comparative study of the soft x-ray absorption spectroscopy of the LiMn2O4 and Li1.15Mn1.85O4 electrode materials with a quantitative analysis of Mn oxidation states. The revealed redox evolution of Mn upon electrochemical cycling clarifies the effect of excess Li in the materials, which naturally explains the different electrochemical performance. The spectral analysis perfectly agrees with different initial cycling capacities of the two materials. The results show unambiguously that Mn3+ starts to dominate the electrode surface after only one cycle. More importantly, the data show that, while LiMn2O4 electrodes follow the nominal Mn redox evolution, the formation of Mn3+ on the electrode surface is largely retarded for Li1....
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...
We performed a comparative study of the soft x-ray absorption spectroscopy of the LiMn2O4 and Li1.15...
We performed soft x-ray absorption spectroscopy (sXAS) and a quantitative analysis of the transition...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich spinel Li1.2Mn1.8O4 thin film electrodes operated at 3 V/Li+/Li are studied by means of...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
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...
Local structural changes in LiMn1.5Ni0.5O4 cathode material were investigated by X-ray absorption sp...
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...
We performed a comparative study of the soft x-ray absorption spectroscopy of the LiMn2O4 and Li1.15...
We performed soft x-ray absorption spectroscopy (sXAS) and a quantitative analysis of the transition...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich transition-metal-oxide cathodes are among the most promising materials for next generat...
Lithium-rich spinel Li1.2Mn1.8O4 thin film electrodes operated at 3 V/Li+/Li are studied by means of...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
We present an exsitu X-ray absorption spectroscopy investigation into lithiation-delithiation of the...
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...
Local structural changes in LiMn1.5Ni0.5O4 cathode material were investigated by X-ray absorption sp...
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...