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Materials Data on Tl2SnTe3 by Materials Project

Tl2SnTe3 crystallizes in the orthorhombic Pnma space group. The structure is three-dimensional. there are two inequivalent Tl1+ sites. In the first Tl1+ site, Tl1+ is bonded in a 10-coordinate geometry to two Tl1+ and eight Te2- atoms. There are one shorter (3.62 Å) and one longer (3.70 Å) Tl–Tl bond lengths. There are a spread of Tl–Te bond distances ranging from 3.46–3.82 Å. In the second Tl1+ site, Tl1+ is bonded in a 8-coordinate geometry to one Tl1+ and seven Te2- atoms. There are a spread of Tl–Te bond distances ranging from 3.35–4.06 Å. Sn4+ is bonded to four Te2- atoms to form edge-sharing SnTe4 tetrahedra. There are a spread of Sn–Te bond distances ranging from 2.79–2.87 Å. There are four inequivalent Te2- sites. In the first Te2- site, Te2- is bonded in a 7-coordinate geometry to six Tl1+ and one Sn4+ atom. In the second Te2- site, Te2- is bonded in a 2-coordinate geometry to four equivalent Tl1+ and two equivalent Sn4+ atoms. In the third Te2- site, Te2- is bonded in a 2-coordinate geometry to four equivalent Tl1+ and two equivalent Sn4+ atoms. In the fourth Te2- site, Te2- is bonded in a 7-coordinate geometry to five Tl1+ and one Sn4+ atom.

36 MATERIALS SCIENCE↗

Materials Data on Tl2SnTe5 by Materials Project

Tl2SnTe5 crystallizes in the tetragonal I4/mcm space group. The structure is three-dimensional. there are two inequivalent Tl1+ sites. In the first Tl1+ site, Tl1+ is bonded in a distorted body-centered cubic geometry to eight equivalent Te+0.80- atoms. All Tl–Te bond lengths are 3.75 Å. In the second Tl1+ site, Tl1+ is bonded in a 10-coordinate geometry to eight equivalent Te+0.80- atoms. All Tl–Te bond lengths are 3.59 Å. Sn2+ is bonded in a tetrahedral geometry to four equivalent Te+0.80- atoms. All Sn–Te bond lengths are 2.84 Å. There are two inequivalent Te+0.80- sites. In the first Te+0.80- site, Te+0.80- is bonded in a distorted square co-planar geometry to four equivalent Te+0.80- atoms. All Te–Te bond lengths are 3.04 Å. In the second Te+0.80- site, Te+0.80- is bonded in a 1-coordinate geometry to four Tl1+, one Sn2+, and one Te+0.80- atom.

36 MATERIALS SCIENCE↗

Materials Data on Tl4SnTe3 by Materials Project

Tl4SnTe3 crystallizes in the tetragonal I4/mcm space group. The structure is three-dimensional. Tl1+ is bonded in a 5-coordinate geometry to five Te2- atoms. There are a spread of Tl–Te bond distances ranging from 3.19–3.60 Å. Sn2+ is bonded to six Te2- atoms to form corner-sharing SnTe6 octahedra. The corner-sharing octahedra tilt angles range from 0–39°. There are four shorter (3.32 Å) and two longer (3.37 Å) Sn–Te bond lengths. There are two inequivalent Te2- sites. In the first Te2- site, Te2- is bonded in a 10-coordinate geometry to eight equivalent Tl1+ and two equivalent Sn2+ atoms. In the second Te2- site, Te2- is bonded in a 8-coordinate geometry to six equivalent Tl1+ and two equivalent Sn2+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on Tl9SnTe6 by Materials Project

Tl9SnTe6 crystallizes in the tetragonal I4/m space group. The structure is three-dimensional. there are two inequivalent Tl1+ sites. In the first Tl1+ site, Tl1+ is bonded in a 5-coordinate geometry to five Te2- atoms. There are a spread of Tl–Te bond distances ranging from 3.22–3.72 Å. In the second Tl1+ site, Tl1+ is bonded to six Te2- atoms to form TlTe6 octahedra that share corners with six equivalent SnTe6 octahedra. The corner-sharing octahedra tilt angles range from 0–40°. There are two shorter (3.45 Å) and four longer (3.52 Å) Tl–Te bond lengths. Sn3+ is bonded to six Te2- atoms to form SnTe6 octahedra that share corners with six equivalent TlTe6 octahedra. The corner-sharing octahedra tilt angles range from 0–40°. There are two shorter (3.18 Å) and four longer (3.26 Å) Sn–Te bond lengths. There are two inequivalent Te2- sites. In the first Te2- site, Te2- is bonded in a 8-coordinate geometry to seven Tl1+ and one Sn3+ atom. In the second Te2- site, Te2- is bonded in a 10-coordinate geometry to nine Tl1+ and one Sn3+ atom.

36 MATERIALS SCIENCE↗