English

Formation of Stoichiometric CsF$_n$ Compounds

Materials Science 2019-01-03 v1

Abstract

Alkali halides MXMX, have been viewed as typical ionic compounds, characterized by 1:1 ratio necessary for charge balance between M+^+ and X^-. It was proposed that group I elements like Cs can be oxidized further under high pressure. Here we perform a comprehensive study for the CsF-F system at pressures up to 100 GPa, and find extremely versatile chemistry. A series of CsFn_n (nn \geq 1) compounds are predicted to be stable already at ambient pressure. Under pressure, 5pp electrons in Cs atoms become active, with growing tendency to form Cs3+^{3+} and Cs5+^{5+} valence states at fluorine-rich conditions. Although Cs2+^{2+} and Cs4+^{4+} are not energetically favoured, the interplay between two mechanisms (polyfluoride anions and polyvalent Cs cations) allows CsF2_2 and CsF4_4 compounds to be stable under pressure. The estimated defluorination temperatures of CsFn_n (n=2,3,5) compounds at atmospheric pressure (218 ^\circC, 150 ^\circC, -15 ^\circC, respectively), are attractive for fluorine storage applications.

Keywords

Cite

@article{arxiv.1408.5551,
  title  = {Formation of Stoichiometric CsF$_n$ Compounds},
  author = {Qiang Zhu and Artem R. Oganov and Qingfeng Zeng},
  journal= {arXiv preprint arXiv:1408.5551},
  year   = {2019}
}

Comments

7 pages, 6 figures