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Materials Data on Sr4Fe6Bi7PbO24 by Materials Project

Sr4Fe6PbBi7O24 crystallizes in the orthorhombic Amm2 space group. The structure is three-dimensional. there are three inequivalent Sr2+ sites. In the first Sr2+ site, Sr2+ is bonded in a 5-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.44–2.99 Å. In the second Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.51–3.03 Å. In the third Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to eight O2- atoms. There are four shorter (2.48 Å) and four longer (2.86 Å) Sr–O bond lengths. There are six inequivalent Fe+2.83+ sites. In the first Fe+2.83+ site, Fe+2.83+ is bonded to six O2- atoms to form distorted FeO6 octahedra that share a cornercorner with one BiO6 octahedra and corners with five FeO6 octahedra. The corner-sharing octahedra tilt angles range from 0–19°. There are a spread of Fe–O bond distances ranging from 1.95–2.29 Å. In the second Fe+2.83+ site, Fe+2.83+ is bonded to six O2- atoms to form distorted FeO6 octahedra that share a cornercorner with one PbO6 octahedra and corners with five FeO6 octahedra. The corner-sharing octahedra tilt angles range from 0–19°. There are five shorter (1.95 Å) and one longer (2.29 Å) Fe–O bond lengths. In the third Fe+2.83+ site, Fe+2.83+ is bonded to five O2- atoms to form distorted FeO5 square pyramids that share a cornercorner with one FeO6 octahedra and corners with four equivalent FeO5 square pyramids. The corner-sharing octahedral tilt angles are 0°. All Fe–O bond lengths are 1.95 Å. In the fourth Fe+2.83+ site, Fe+2.83+ is bonded to five O2- atoms to form distorted FeO5 square pyramids that share a cornercorner with one FeO6 octahedra and corners with four equivalent FeO5 square pyramids. The corner-sharing octahedral tilt angles are 0°. All Fe–O bond lengths are 1.95 Å. In the fifth Fe+2.83+ site, Fe+2.83+ is bonded to six O2- atoms to form distorted FeO6 octahedra that share corners with five FeO6 octahedra and a cornercorner with one FeO5 square pyramid. The corner-sharing octahedra tilt angles range from 0–18°. There are a spread of Fe–O bond distances ranging from 1.94–2.21 Å. In the sixth Fe+2.83+ site, Fe+2.83+ is bonded to six O2- atoms to form distorted FeO6 octahedra that share corners with five FeO6 octahedra and a cornercorner with one FeO5 square pyramid. The corner-sharing octahedra tilt angles range from 0–18°. There are a spread of Fe–O bond distances ranging from 1.95–2.21 Å. Pb2+ is bonded to six O2- atoms to form PbO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent PbO6 octahedra, and edges with eight BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–12°. There are one shorter (2.51 Å) and five longer (2.73 Å) Pb–O bond lengths. There are six inequivalent Bi3+ sites. In the first Bi3+ site, Bi3+ is bonded to six O2- atoms to form BiO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent BiO6 octahedra, edges with four equivalent PbO6 octahedra, and edges with four equivalent BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–10°. There are a spread of Bi–O bond distances ranging from 2.32–2.73 Å. In the second Bi3+ site, Bi3+ is bonded to six O2- atoms to form distorted BiO6 octahedra that share corners with four equivalent BiO6 octahedra, edges with two equivalent PbO6 octahedra, and edges with six BiO6 octahedra. The corner-sharing octahedra tilt angles range from 5–14°. There are a spread of Bi–O bond distances ranging from 2.06–2.90 Å. In the third Bi3+ site, Bi3+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are four shorter (2.47 Å) and four longer (2.75 Å) Bi–O bond lengths. In the fourth Bi3+ site, Bi3+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are four shorter (2.47 Å) and four longer (2.75 Å) Bi–O bond lengths. In the fifth Bi3+ site, Bi3+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are four shorter (2.45 Å) and four longer (2.74 Å) Bi–O bond lengths. In the sixth Bi3+ site, Bi3+ is bonded in a 8-coordinate geometry to eight O2- atoms. There are four shorter (2.45 Å) and four longer (2.74 Å) Bi–O bond lengths. There are fifteen inequivalent O2- sites. In the first O2- site, O2- is bonded in a 2-coordinate geometry to two equivalent Sr2+, two Fe+2.83+, and two Bi3+ atoms. In the second O2- site, O2- is bonded in a 4-coordinate geometry to two Sr2+ and two Fe+2.83+ atoms. In the third O2- site, O2- is bonded to five Bi3+ atoms to form distorted OBi5 square pyramids that share a cornercorner with one OSr4FeBi octahedra, corners with four equivalent OBi5 square pyramids, and edges with eight OSrBi4Pb octahedra. The corner-sharing octahedral tilt angles are 0°. In the fourth O2- site, O2- is bonded to one Sr2+, one Pb2+, and four equivalent Bi3+ atoms to form OSrBi4Pb octahedra that share corners with five OSr4FePb octahedra, edges with four OSrBi3Pb2 octahedra, and edges with four equivalent OBi5 square pyramids. The corner-sharing octahedra tilt angles range from 0–5°. In the fifth O2- site, O2- is bonded to one Sr2+, two equivalent Pb2+, and three Bi3+ atoms to form distorted OSrBi3Pb2 octahedra that share corners with four equivalent OSrBi3Pb2 octahedra, edges with ten OSrBi4Pb octahedra, and edges with two equivalent OBi5 square pyramids. The corner-sharing octahedra tilt angles range from 10–12°. The O–Sr bond length is 2.44 Å. The O–Bi bond length is 2.90 Å. In the sixth O2- site, O2- is bonded to one Sr2+, two equivalent Pb2+, and three Bi3+ atoms to form distorted OSrBi3Pb2 octahedra that share corners with four equivalent OSrBi3Pb2 octahedra, edges with ten OSrBi4Pb octahedra, and edges with two equivalent OBi5 square pyramids. The corner-sharing octahedra tilt angles range from 10–12°. In the seventh O2- site, O2- is bonded in a 2-coordinate geometry to two Fe+2.83+ and four Bi3+ atoms. In the eighth O2- site, O2- is bonded in a 6-coordinate geometry to two Fe+2.83+ and four Bi3+ atoms. In the ninth O2- site, O2- is bonded in a 2-coordinate geometry to two Fe+2.83+ and four Bi3+ atoms. In the tenth O2- site, O2- is bonded in a 2-coordinate geometry to two Fe+2.83+ and four Bi3+ atoms. In the eleventh O2- site, O2- is bonded in a 4-coordinate geometry to two Fe+2.83+ and two Bi3+ atoms. In the twelfth O2- site, O2- is bonded to four equivalent Sr2+, one Fe+2.83+, and one Bi3+ atom to form distorted OSr4FeBi octahedra that share corners with four equivalent OSr4FeBi octahedra, a cornercorner with one OBi5 square pyramid, and edges with eight OSr4FePb octahedra. The corner-sharing octahedra tilt angles range from 0–1°. In the thirteenth O2- site, O2- is bonded to four equivalent Sr2+, one Fe+2.83+, and one Pb2+ atom to form distorted OSr4FePb octahedra that share corners with five OSrBi4Pb octahedra and edges with eight OSr4FeBi octahedra. The corner-sharing octahedra tilt angles range from 0–1°. In the fourteenth O2- site, O2- is bonded in a 1-coordinate geometry to four Sr2+ and one Bi3+ atom. The O–Bi bond length is 2.06 Å. In the fifteenth O2- site, O2- is bonded in a 1-coordinate geometry to four Sr2+ and one Bi3+ atom.

36 MATERIALS SCIENCE↗

Materials Data on Sr2FeBiPbO6 by Materials Project

Sr2FePbBiO6 is (La,Ba)CuO4-derived structured and crystallizes in the tetragonal I4mm space group. The structure is three-dimensional. there are two inequivalent Sr2+ sites. In the first Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.62–2.75 Å. In the second Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.60–2.76 Å. Fe3+ is bonded to six O2- atoms to form distorted FeO6 square pyramids that share a cornercorner with one PbO6 octahedra, a cornercorner with one BiO6 octahedra, and corners with four equivalent FeO6 square pyramids. The corner-sharing octahedral tilt angles are 0°. There are a spread of Fe–O bond distances ranging from 1.91–2.65 Å. Pb2+ is bonded to six O2- atoms to form PbO6 octahedra that share corners with four equivalent PbO6 octahedra, a cornercorner with one FeO6 square pyramid, edges with four equivalent PbO6 octahedra, and edges with four equivalent BiO6 octahedra. The corner-sharing octahedral tilt angles are 1°. There are a spread of Pb–O bond distances ranging from 2.37–2.89 Å. Bi3+ is bonded to six O2- atoms to form BiO6 octahedra that share corners with four equivalent BiO6 octahedra, a cornercorner with one FeO6 square pyramid, edges with four equivalent PbO6 octahedra, and edges with four equivalent BiO6 octahedra. The corner-sharing octahedral tilt angles are 4°. There are a spread of Bi–O bond distances ranging from 2.11–2.81 Å. There are five inequivalent O2- sites. In the first O2- site, O2- is bonded to one Sr2+, four equivalent Pb2+, and one Bi3+ atom to form a mixture of corner and edge-sharing OSrBiPb4 octahedra. The corner-sharing octahedral tilt angles are 1°. In the second O2- site, O2- is bonded to one Sr2+, one Pb2+, and four equivalent Bi3+ atoms to form OSrBi4Pb octahedra that share corners with five OSrBi4Pb octahedra and edges with eight OSrBiPb4 octahedra. The corner-sharing octahedra tilt angles range from 0–4°. In the third O2- site, O2- is bonded to four equivalent Sr2+, one Fe3+, and one Pb2+ atom to form distorted OSr4FePb octahedra that share corners with five OSrBi4Pb octahedra and edges with eight OSrBiPb4 octahedra. The corner-sharing octahedra tilt angles range from 0–11°. In the fourth O2- site, O2- is bonded in a 1-coordinate geometry to four equivalent Sr2+, one Fe3+, and one Bi3+ atom. In the fifth O2- site, O2- is bonded in a 6-coordinate geometry to four Sr2+ and two equivalent Fe3+ atoms.

36 MATERIALS SCIENCE↗

Materials Data on Sr4Fe4Bi5PbO18 by Materials Project

Sr4Fe4PbBi5O18 crystallizes in the orthorhombic Amm2 space group. The structure is three-dimensional. there are four inequivalent Sr2+ sites. In the first Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.59–2.79 Å. In the second Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.61–2.79 Å. In the third Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.57–2.78 Å. In the fourth Sr2+ site, Sr2+ is bonded in a 9-coordinate geometry to nine O2- atoms. There are a spread of Sr–O bond distances ranging from 2.56–2.78 Å. There are four inequivalent Fe+2.75+ sites. In the first Fe+2.75+ site, Fe+2.75+ is bonded to six O2- atoms to form FeO6 octahedra that share a cornercorner with one BiO6 octahedra, corners with five FeO6 octahedra, and faces with four BiO12 cuboctahedra. The corner-sharing octahedra tilt angles range from 0–4°. There are a spread of Fe–O bond distances ranging from 1.93–2.31 Å. In the second Fe+2.75+ site, Fe+2.75+ is bonded to six O2- atoms to form FeO6 octahedra that share a cornercorner with one PbO6 octahedra, corners with five FeO6 octahedra, and faces with four BiO12 cuboctahedra. The corner-sharing octahedra tilt angles range from 0–4°. There are a spread of Fe–O bond distances ranging from 1.95–2.06 Å. In the third Fe+2.75+ site, Fe+2.75+ is bonded to six O2- atoms to form FeO6 octahedra that share a cornercorner with one BiO6 octahedra, corners with five FeO6 octahedra, and faces with four BiO12 cuboctahedra. The corner-sharing octahedra tilt angles range from 0–3°. There are a spread of Fe–O bond distances ranging from 1.94–2.35 Å. In the fourth Fe+2.75+ site, Fe+2.75+ is bonded to six O2- atoms to form FeO6 octahedra that share a cornercorner with one BiO6 octahedra, corners with five FeO6 octahedra, and faces with four BiO12 cuboctahedra. The corner-sharing octahedra tilt angles range from 0–3°. There are a spread of Fe–O bond distances ranging from 1.94–2.31 Å. Pb2+ is bonded to six O2- atoms to form PbO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent PbO6 octahedra, and edges with eight BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–3°. There are a spread of Pb–O bond distances ranging from 2.32–2.82 Å. There are five inequivalent Bi3+ sites. In the first Bi3+ site, Bi3+ is bonded to six O2- atoms to form BiO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent BiO6 octahedra, edges with four equivalent PbO6 octahedra, and edges with four BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–3°. There are a spread of Bi–O bond distances ranging from 2.17–2.75 Å. In the second Bi3+ site, Bi3+ is bonded to six O2- atoms to form BiO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent BiO6 octahedra, edges with two equivalent PbO6 octahedra, and edges with six BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–4°. There are a spread of Bi–O bond distances ranging from 2.15–2.81 Å. In the third Bi3+ site, Bi3+ is bonded to six O2- atoms to form BiO6 octahedra that share a cornercorner with one FeO6 octahedra, corners with four equivalent BiO6 octahedra, edges with two equivalent PbO6 octahedra, and edges with six BiO6 octahedra. The corner-sharing octahedra tilt angles range from 0–4°. There are a spread of Bi–O bond distances ranging from 2.14–2.81 Å. In the fourth Bi3+ site, Bi3+ is bonded to twelve O2- atoms to form BiO12 cuboctahedra that share corners with four equivalent BiO12 cuboctahedra, faces with four equivalent BiO12 cuboctahedra, and faces with eight FeO6 octahedra. There are eight shorter (2.74 Å) and four longer (2.82 Å) Bi–O bond lengths. In the fifth Bi3+ site, Bi3+ is bonded to twelve O2- atoms to form BiO12 cuboctahedra that share corners with four equivalent BiO12 cuboctahedra, faces with four equivalent BiO12 cuboctahedra, and faces with eight FeO6 octahedra. There are a spread of Bi–O bond distances ranging from 2.69–2.87 Å. There are twelve inequivalent O2- sites. In the first O2- site, O2- is bonded to four Sr2+, one Fe+2.75+, and one Bi3+ atom to form distorted OSr4FeBi octahedra that share corners with five OSrBi5 octahedra and edges with eight OSr4FePb octahedra. The corner-sharing octahedra tilt angles range from 0–20°. In the second O2- site, O2- is bonded to four Sr2+, one Fe+2.75+, and one Pb2+ atom to form distorted OSr4FePb octahedra that share corners with five OSrBi4Pb octahedra and edges with eight OSr4FeBi octahedra. The corner-sharing octahedra tilt angles range from 0–14°. In the third O2- site, O2- is bonded to four Sr2+, one Fe+2.75+, and one Bi3+ atom to form distorted OSr4FeBi octahedra that share corners with five OSrBi3Pb2 octahedra and edges with eight OSrBi5 octahedra. The corner-sharing octahedra tilt angles range from 0–22°. In the fourth O2- site, O2- is bonded to four Sr2+, one Fe+2.75+, and one Bi3+ atom to form distorted OSr4FeBi octahedra that share corners with five OSrBi3Pb2 octahedra and edges with eight OSrBi5 octahedra. The corner-sharing octahedra tilt angles range from 0–22°. In the fifth O2- site, O2- is bonded in a distorted linear geometry to two Fe+2.75+ and four Bi3+ atoms. In the sixth O2- site, O2- is bonded in a distorted linear geometry to two Fe+2.75+ and four Bi3+ atoms. In the seventh O2- site, O2- is bonded in a distorted linear geometry to two Sr2+, two Fe+2.75+, and two Bi3+ atoms. In the eighth O2- site, O2- is bonded in a 2-coordinate geometry to two Sr2+, two Fe+2.75+, and two Bi3+ atoms. In the ninth O2- site, O2- is bonded to one Sr2+ and five Bi3+ atoms to form OSrBi5 octahedra that share corners with five OSrBi5 octahedra and edges with twelve OSrBi4Pb octahedra. The corner-sharing octahedra tilt angles range from 0–1°. In the tenth O2- site, O2- is bonded to one Sr2+, one Pb2+, and four Bi3+ atoms to form OSrBi4Pb octahedra that share corners with five OSrBi4Pb octahedra and edges with twelve OSrBi5 octahedra. The corner-sharing octahedra tilt angles range from 0–4°. In the eleventh O2- site, O2- is bonded to one Sr2+, two equivalent Pb2+, and three Bi3+ atoms to form OSrBi3Pb2 octahedra that share corners with five OSrBi3Pb2 octahedra and edges with twelve OSrBi5 octahedra. The corner-sharing octahedra tilt angles range from 0–3°. In the twelfth O2- site, O2- is bonded to one Sr2+, two equivalent Pb2+, and three Bi3+ atoms to form OSrBi3Pb2 octahedra that share corners with five OSrBi3Pb2 octahedra and edges with twelve OSrBi5 octahedra. The corner-sharing octahedra tilt angles range from 0–3°.

36 MATERIALS SCIENCE↗