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Materials Data on Cs2GdCl5 by Materials Project

Cs2GdCl5 crystallizes in the orthorhombic Pnma space group. The structure is three-dimensional. there are two inequivalent Cs1+ sites. In the first Cs1+ site, Cs1+ is bonded in a 10-coordinate geometry to ten Cl1- atoms. There are a spread of Cs–Cl bond distances ranging from 3.65–4.01 Å. In the second Cs1+ site, Cs1+ is bonded in a 10-coordinate geometry to ten Cl1- atoms. There are a spread of Cs–Cl bond distances ranging from 3.55–3.86 Å. Gd3+ is bonded to six Cl1- atoms to form corner-sharing GdCl6 octahedra. The corner-sharing octahedral tilt angles are 0°. There are a spread of Gd–Cl bond distances ranging from 2.60–2.78 Å. There are four inequivalent Cl1- sites. In the first Cl1- site, Cl1- is bonded in a 1-coordinate geometry to four Cs1+ and one Gd3+ atom. In the second Cl1- site, Cl1- is bonded in a distorted single-bond geometry to four Cs1+ and one Gd3+ atom. In the third Cl1- site, Cl1- is bonded in a 5-coordinate geometry to four Cs1+ and one Gd3+ atom. In the fourth Cl1- site, Cl1- is bonded in a distorted linear geometry to four Cs1+ and two equivalent Gd3+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on Cs3GdCl6 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↗