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Local Lattice Distortion Caused by Short Range Charge Ordering in LiMn$_2$O$_4$

Strongly Correlated Electrons 2013-08-02 v1

Abstract

We have performed powder neutron diffraction on 7^7Li-enriched sample of LiMn2_2O4_4 at 300 K. The crystal structure determined by Rietveld analysis is a cubic spinel with space group of Fd3ˉmFd\bar{3}m in which all Mn atoms are crystallograghically equivalent, consistent with many preceding studies. However, the atomic pair distrubution function (PDF) of this compound can not be fitted by the cubic structure with space group of Fd3ˉmFd\bar{3}m satisfactorily, and it can be reproduced by the orthorhombic structure with FdddFddd. It corresponds with the structure of charge ordered phase below about 260 K, indicating a short range charge ordering. In the local structure determined by PDF analysis, two types of MnO6_6 octahedra with long and short atomic distances between Mn and O atoms exist and their Mn-O distances are almost consistent with the distances in the charge ordered phase. From these results, valence electrons are localized at Mn sites like a glass even in the cubic phase, resulting in the non-metallic electrical conductivity.

Keywords

Cite

@article{arxiv.1307.2980,
  title  = {Local Lattice Distortion Caused by Short Range Charge Ordering in LiMn$_2$O$_4$},
  author = {Katsuaki Kodama and Naoki Igawa and Shin-ichi Shamoto and Kazutaka Ikeda and Hidetoshi Oshita and Naokatsu Kaneko and Toshiya Otomo and Kentaro Suzuya},
  journal= {arXiv preprint arXiv:1307.2980},
  year   = {2013}
}

Comments

6 pages, 4 figures