We have performed in situ Mn K-edge X-ray absorption spectroscopy (XAS) studies on nanosized LiAl 0.15 Mn 1.85 O 4 cathode material at various charging and discharging potentials in an aqueous solution (9.0 M LiNO 3 ). The associated changes in the electronic and local atomic structures were investigated during the course of charging and discharging. The B1 and B2 peaks appeared in the Mn K-edge X-ray absorption near-edge structure spectra of LiAl 0.15 Mn 1.85 O 4 were due to pronounced multiple scattering effect. Two types of Mn-O bonds, namely Mn-O(4) and Mn-O(2), were observed in the first coordination shell. It was found that the Mn-O(4) and the second shell Mn-Mn/Al bond distances as well as the Debye-Waller factors decrease on charging and increase on discharging. In contrast, the Mn-O(2) bonds show an elongation on charging and contraction on discharging. The Debye-Waller factor of Mn-O(2) does not change significantly during both charging and discharging. Thus, we infer that the ordering of Mn-O 6 octahedra is mainly due to the contribution from Mn-O(4) bonds.
CITATION STYLE
Hwang, B. J., Tsai, Y. W., Santhanam, R., Liu, D. G., & Lee, J. F. (2003). In Situ X-Ray Absorption Spectroscopy Studies of Nanosized LiAl[sub 0.15]Mn[sub 1.85]O[sub 4] Cathode Material in an Aqueous Solution. Journal of The Electrochemical Society, 150(3), A335. https://doi.org/10.1149/1.1545451
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