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We have investigated the local electronic and atomic structure of the LiMn 0.5 Ni 0.5 O 2 electrode during the first charge and discharge process using in situ X-ray absorption spectroscopy (XAS) of the Mn and Ni K-edges. The Ni K-edge structure in the XANES spectrum shifts to higher energy during charge and shifts back reversibly during discharge in the higher voltage region of ∼4 V, whereas the Mn K-edge structure does not appear to exhibit a rigid edge shift. Further Li-ion intercalation during extended discharge in the 1-V plateau leads to the reduction of Mn 4+ ions suggesting that the charge compensation in this region is achieved via the reduction of Mn 4+ ions to Mn 2+ . Mn K-edge EXAFS results indicate that a small amount of Li is found in the Ni 2+ /Mn 4+ layers. These Li ions in the transition metal layers are primarily present in the second coordination shell of Mn and not around Ni. Ni K-edge EXAFS fitting results suggest that the oxidation process upon Li deintercalation takes place in two steps: Ni 2+ to Ni 3+ first, and then Ni 3+ to Ni 4+ .
Yoon et al. (Thu,) studied this question.
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