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Orthorhombic UMo₅O₁₆ Mo₅O₁₆U

Orthorhombic · space group P222 (No. 16) · Pearson oP23

Symmetry elements and Wyckoff positions (interactive)

Orthorhombic UMo₅O₁₆ in P222

Setting
Loading the group…
x = 0.10, y = 0.17, z = 0.08

Unit cell

Lattice constants
a = 9.885 Å, b = 7.167 Å, c = 4.133 Å; α = 90.00°, β = 90.00°, γ = 90.00°
Cell volume
292.8 ų
Atoms in the conventional cell
23 (O 16, U 1, Mo 6)
Formula units Z
1
Pearson symbol
oP23 — orthorhombic, primitive lattice, 23 atoms per conventional cell
Symmetry operations
4 per cell

Crystallographic sites

SiteElementWyckoffMultiplicityxyz
O3O1a10.00000.00000.0000
O4O1c10.00000.50000.0000
U10U1d10.00000.00000.5000
O5O2j20.24900.00000.5000
O6O2l20.35800.50000.5000
O7O2p20.50000.18900.5000
Mo1Mo2s20.00000.50000.4100
Mo2Mo4u40.32000.24600.4050
O8O4u40.12500.29900.5100
O9O4u40.31700.24600.0060

The multiplicity and the Wyckoff letter say how many copies of the site the group makes in one cell and on which kind of symmetry element the site sits; the 23 atoms drawn above are these sites multiplied by all 4 operations. Press Wyckoff under Colour to see the sites, and tick a symmetry element on the left to see which atoms lie on it.

How to read the label

A6B16C_oP23_16_su_acjlp2u_d-001: the stoichiometry comes first (A, B, C… are the elements in alphabetical order of their site labels), then the Pearson symbol oP23, then the space-group number 16, then the Wyckoff letters occupied by each element in turn (O: 1a; O: 1c; U: 1d; O: 2j; O: 2l; O: 2p; Mo: 2s; Mo: 4u; O: 4u; O: 4u). Two structures with the same label are the same arrangement with different cell parameters or coordinates.

Note: Orthorhombic.

Source

Coordinates and cell from the AFLOW Encyclopedia of Crystallographic Prototypes, entry A6B16C_oP23_16_su_acjlp2u_d-001 (M. J. Mehl et al., Comput. Mater. Sci. 136, S1 (2017); D. Hicks et al., ibid. 161, S1 (2019) and 199, 110450 (2021); S. Eckert et al., ibid. 240, 112988 (2024)). Symmetry elements, Wyckoff assignment and the diagram are computed on this page from the group operations.

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