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Materials Data on In2Co3S2 by Materials Project

Co3In2S2 crystallizes in the trigonal R-3m space group. The structure is three-dimensional. Co is bonded in a distorted linear geometry to four In and two equivalent S atoms. There are two shorter (2.67 Å) and two longer (2.75 Å) Co–In bond lengths. Both Co–S bond lengths are 2.15 Å. There are two inequivalent In sites. In the first In site, In is bonded to six equivalent Co and two equivalent S atoms to form InCo6S2 hexagonal bipyramids that share corners with six equivalent InCo6S2 hexagonal bipyramids and faces with six equivalent InCo6S6 cuboctahedra. Both In–S bond lengths are 3.04 Å. In the second In site, In is bonded to six equivalent Co and six equivalent S atoms to form InCo6S6 cuboctahedra that share corners with six equivalent InCo6S6 cuboctahedra, edges with six equivalent InCo6S6 cuboctahedra, and faces with six equivalent InCo6S2 hexagonal bipyramids. All In–S bond lengths are 3.17 Å. S is bonded in a 3-coordinate geometry to three equivalent Co and four In atoms.

36 MATERIALS SCIENCE↗

Materials Data on In2CoS4 by Materials Project

CoIn2S4 is Spinel structured and crystallizes in the cubic Fd-3m space group. The structure is three-dimensional. Co2+ is bonded to four equivalent S2- atoms to form CoS4 tetrahedra that share corners with twelve equivalent InS6 octahedra. The corner-sharing octahedral tilt angles are 55°. All Co–S bond lengths are 2.31 Å. In3+ is bonded to six equivalent S2- atoms to form InS6 octahedra that share corners with six equivalent CoS4 tetrahedra and edges with six equivalent InS6 octahedra. All In–S bond lengths are 2.65 Å. S2- is bonded in a distorted rectangular see-saw-like geometry to one Co2+ and three equivalent In3+ atoms.

36 MATERIALS SCIENCE↗