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Materials Data on Co(BiO3)2 by Materials Project

CoBiO4BiO2 crystallizes in the tetragonal P4mm space group. The structure is two-dimensional and consists of one BiO2 sheet oriented in the (0, 0, 1) direction and one CoBiO4 sheet oriented in the (0, 0, 1) direction. In the BiO2 sheet, Bi4+ is bonded in a 4-coordinate geometry to four equivalent O2- atoms. All Bi–O bond lengths are 2.24 Å. O2- is bonded in a bent 120 degrees geometry to two equivalent Bi4+ atoms. In the CoBiO4 sheet, Co4+ is bonded to six O2- atoms to form distorted corner-sharing CoO6 octahedra. The corner-sharing octahedral tilt angles are 23°. There are a spread of Co–O bond distances ranging from 1.69–1.92 Å. Bi4+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are four shorter (2.38 Å) and four longer (2.67 Å) Bi–O bond lengths. There are three inequivalent O2- sites. In the first O2- site, O2- is bonded in a single-bond geometry to one Co4+ atom. In the second O2- site, O2- is bonded in a 2-coordinate geometry to two equivalent Co4+ and two equivalent Bi4+ atoms. In the third O2- site, O2- is bonded in a distorted single-bond geometry to one Co4+ and four equivalent Bi4+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on Co3BiO8 by Materials Project

Computed materials data using density functional theory calculations. These calculations determine the electronic structure of bulk materials by solving approximations to the Schrodinger equation. For more information, see https://materialsproject.org/docs/calculations

36 MATERIALS SCIENCE↗

Materials Data on CoBiO3 by Materials Project

BiCoO3 is Orthorhombic Perovskite structured and crystallizes in the orthorhombic Pnma space group. The structure is three-dimensional. Co3+ is bonded to six O2- atoms to form corner-sharing CoO6 octahedra. The corner-sharing octahedral tilt angles are 27°. There is two shorter (1.96 Å) and four longer (1.98 Å) Co–O bond length. Bi3+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are a spread of Bi–O bond distances ranging from 2.33–2.64 Å. There are two inequivalent O2- sites. In the first O2- site, O2- is bonded in a 4-coordinate geometry to two equivalent Co3+ and two equivalent Bi3+ atoms. In the second O2- site, O2- is bonded in a 5-coordinate geometry to two equivalent Co3+ and three equivalent Bi3+ atoms.

36 MATERIALS SCIENCE↗