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Materials Data on RbInBr3 by Materials Project

RbInBr3 is (Cubic) Perovskite structured and crystallizes in the triclinic P1 space group. The structure is three-dimensional. Rb1+ is bonded to twelve Br1- atoms to form RbBr12 cuboctahedra that share corners with twelve equivalent RbBr12 cuboctahedra, faces with six equivalent RbBr12 cuboctahedra, and faces with eight equivalent InBr6 octahedra. There are a spread of Rb–Br bond distances ranging from 3.98–4.12 Å. In2+ is bonded to six Br1- atoms to form InBr6 octahedra that share corners with six equivalent InBr6 octahedra and faces with eight equivalent RbBr12 cuboctahedra. The corner-sharing octahedra tilt angles range from 1–3°. There are a spread of In–Br bond distances ranging from 2.85–2.89 Å. There are three inequivalent Br1- sites. In the first Br1- site, Br1- is bonded in a distorted linear geometry to four equivalent Rb1+ and two equivalent In2+ atoms. In the second Br1- site, Br1- is bonded in a distorted linear geometry to four equivalent Rb1+ and two equivalent In2+ atoms. In the third Br1- site, Br1- is bonded in a distorted linear geometry to four equivalent Rb1+ and two equivalent In2+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on RbInBr3 by Materials Project

RbInBr3 is Ilmenite-like structured and crystallizes in the trigonal R3c space group. The structure is three-dimensional. Rb1+ is bonded in a 6-coordinate geometry to six equivalent Br1- atoms. There are three shorter (3.56 Å) and three longer (3.78 Å) Rb–Br bond lengths. In2+ is bonded to six equivalent Br1- atoms to form corner-sharing InBr6 octahedra. The corner-sharing octahedral tilt angles are 20°. There are three shorter (2.89 Å) and three longer (2.92 Å) In–Br bond lengths. Br1- is bonded to two equivalent Rb1+ and two equivalent In2+ atoms to form a mixture of distorted edge and corner-sharing BrRb2In2 trigonal pyramids.

36 MATERIALS SCIENCE↗