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Materials Data on Li2RuF6 by Materials Project

Li2RuF6 is Hydrophilite-derived structured and crystallizes in the tetragonal P4_2/mnm space group. The structure is three-dimensional. Li1+ is bonded to six F1- atoms to form LiF6 octahedra that share corners with four equivalent LiF6 octahedra, corners with four equivalent RuF6 octahedra, an edgeedge with one LiF6 octahedra, and an edgeedge with one RuF6 octahedra. The corner-sharing octahedra tilt angles range from 47–53°. There are a spread of Li–F bond distances ranging from 2.04–2.10 Å. Ru4+ is bonded to six F1- atoms to form RuF6 octahedra that share corners with eight equivalent LiF6 octahedra and edges with two equivalent LiF6 octahedra. The corner-sharing octahedra tilt angles range from 47–48°. There is two shorter (1.92 Å) and four longer (1.98 Å) Ru–F bond length. There are two inequivalent F1- sites. In the first F1- site, F1- is bonded in a distorted trigonal planar geometry to two equivalent Li1+ and one Ru4+ atom. In the second F1- site, F1- is bonded in a distorted trigonal planar geometry to two equivalent Li1+ and one Ru4+ atom.

36 MATERIALS SCIENCE↗

Materials Data on LiRuF6 by Materials Project

LiRuF6 crystallizes in the trigonal R-3 space group. The structure is three-dimensional. Li1+ is bonded to six equivalent F1- atoms to form LiF6 octahedra that share corners with six equivalent RuF6 octahedra. The corner-sharing octahedral tilt angles are 39°. All Li–F bond lengths are 2.07 Å. Ru5+ is bonded to six equivalent F1- atoms to form RuF6 octahedra that share corners with six equivalent LiF6 octahedra. The corner-sharing octahedral tilt angles are 39°. All Ru–F bond lengths are 1.90 Å. F1- is bonded in a bent 150 degrees geometry to one Li1+ and one Ru5+ atom.

36 MATERIALS SCIENCE↗