English

Phase Separation in Li$_x$FePO$_4$ Induced by Correlation Effects

Materials Science 2009-11-10 v2

Abstract

We report on a significant failure of LDA and GGA to reproduce the phase stability and thermodynamics of mixed-valence Lix_xFePO4_4 compounds. Experimentally, Lix_xFePO4_4 compositions (0x10 \leq x \leq 1) are known to be unstable and phase separate into Li FePO4_4 and FePO4_4. However, first-principles calculations with LDA/GGA yield energetically favorable intermediate compounds an d hence no phase separation. This qualitative failure of LDA/GGA seems to have its origin in the LDA/GGA self-interaction which de localizes charge over the mixed-valence Fe ions, and is corrected by explicitly considering correlation effects in this material. This is demonstrated with LDA+U calculations which correctly predict phase separation in Lix_xFePO4_4 for UJ3.5U-J \gtrsim 3.5eV. T he origin of the destabilization of intermediate compounds is identified as electron localization and charge ordering at different iron sites. Introduction of correlation also yields more accurate electrochemical reaction energies between FePO4_4/Lix_xFePO4_ 4 and Li/Li+^+ electrodes.

Cite

@article{arxiv.cond-mat/0404631,
  title  = {Phase Separation in Li$_x$FePO$_4$ Induced by Correlation Effects},
  author = {F. Zhou and C. A. Marianetti and M. Cococcioni and D. Morgan and G. Ceder},
  journal= {arXiv preprint arXiv:cond-mat/0404631},
  year   = {2009}
}

Comments

12 pages, 5 figures, Phys. Rev. B 201101R, 2004

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