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Materials Data on FeAg3F6 by Materials Project

FeAg3F6 is (Cubic) Perovskite-like structured and crystallizes in the cubic Fm-3m space group. The structure is three-dimensional. Fe3+ is bonded to six equivalent F1- atoms to form FeF6 octahedra that share corners with six equivalent AgF6 octahedra and faces with eight equivalent AgF12 cuboctahedra. The corner-sharing octahedral tilt angles are 0°. All Fe–F bond lengths are 1.94 Å. There are two inequivalent Ag1+ sites. In the first Ag1+ site, Ag1+ is bonded to twelve equivalent F1- atoms to form AgF12 cuboctahedra that share corners with twelve equivalent AgF12 cuboctahedra, faces with six equivalent AgF12 cuboctahedra, faces with four equivalent FeF6 octahedra, and faces with four equivalent AgF6 octahedra. All Ag–F bond lengths are 3.04 Å. In the second Ag1+ site, Ag1+ is bonded to six equivalent F1- atoms to form AgF6 octahedra that share corners with six equivalent FeF6 octahedra and faces with eight equivalent AgF12 cuboctahedra. The corner-sharing octahedral tilt angles are 0°. All Ag–F bond lengths are 2.35 Å. F1- is bonded in a distorted linear geometry to one Fe3+ and five Ag1+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on FeAg3F6 by Materials Project

FeAg3F6 crystallizes in the tetragonal I4/mmm space group. The structure is three-dimensional. Fe3+ is bonded in an octahedral geometry to six F1- atoms. There is four shorter (1.95 Å) and two longer (1.96 Å) Fe–F bond length. There are two inequivalent Ag1+ sites. In the first Ag1+ site, Ag1+ is bonded in a 8-coordinate geometry to four equivalent F1- atoms. All Ag–F bond lengths are 2.42 Å. In the second Ag1+ site, Ag1+ is bonded in a linear geometry to two equivalent F1- atoms. Both Ag–F bond lengths are 2.11 Å. There are two inequivalent F1- sites. In the first F1- site, F1- is bonded in a distorted trigonal planar geometry to one Fe3+ and two equivalent Ag1+ atoms. In the second F1- site, F1- is bonded in a linear geometry to one Fe3+ and one Ag1+ atom.

36 MATERIALS SCIENCE↗