Periodic table (crystal structure)


For elements that are solid at standard temperature and pressure the table gives the crystalline structure of the most thermodynamically stable form in those conditions. In all other cases the structure given is for the element at its melting point. Data is presented only for the first 114 elements as well as the 118th, and predictions are given for elements that have never been produced in bulk.

Table

Among the undiscovered elements, predictions are only available for ununennium and unbinilium, which are predicted to crystallise in body-centered cubic structures like their lighter congeners.

Unusual structures

Elementcrystal systemcoordination numbernotes
Mncubicdistorted bcc – unit cell contains Mn atoms in 4 different environments.
Znhexagonaldistorted from ideal hcp. 6 nearest neighbors in same plane: 6 in adjacent planes 14% farther away
Gaorthorhombiceach Ga atom has one nearest neighbour at 244 pm, 2 at 270 pm, 2 at 273 pm, 2 at 279 pm.The structure is related to that of iodine.
Cdhexagonaldistorted from ideal hcp. 6 nearest neighbours in the same plane- 6 in adjacent planes 15% farther away
Intetragonalslightly distorted fcc structure
Sntetragonal4 neighbours at 302 pm; 2 at 318 pm; 4 at 377 pm; 8 at 441 pmwhite tin form
Sbrhombohedralpuckered sheet; each Sb atom has 3 neighbours in the same sheet at 290.8pm; 3 in adjacent sheet at 335.5 pm.grey metallic form.
Hgrhombohedral6 nearest neighbours at 234 K and 1 atm this structure can be considered to be a distorted hcp lattice with the nearest neighbours in the same plane being approx 16% farther away
Birhombohedralpuckered sheet; each Bi atom has 3 neighbours in the same sheet at 307.2 pm; 3 in adjacent sheet at 352.9 pm.Bi, Sb and grey As have the same space group in their crystal
Pocubic6 nearest neighbourssimple cubic lattice. The atoms in the unit cell are at the corner of a cube.
Smtrigonal12 nearest neighbourscomplex hcp with 9-layer repeat: ABCBCACAB....
Patetragonalbody centred tetragonal unit cell, which can be considered to be a distorted bcc
Uorthorhombicstrongly distorted hcp structure. Each atom has four near neighbours, 2 at 275.4 pm, 2 at 285.4 pm. The next four at distances 326.3 pm and four more at 334.2 pm.
Nporthorhombichighly distorted bcc structure. Lattice parameters: a = 666.3 pm, b = 472.3 pm, c = 488.7 pm
Pumonoclinicslightly distorted hexagonal structure. 16 atoms per unit cell. Lattice parameters: a = 618.3 pm, b = 482.2 pm, c = 1096.3 pm, β = 101.79°

Usual crystal structures

Close packed metal structures

Many metals adopt close packed structures i.e. hexagonal close packed and face-centred cubic structures. A simple model for both of these is to assume that the metal atoms are spherical and are packed together in the most efficient way. In closest packing every atom has 12 equidistant nearest neighbours, and therefore a coordination number of 12. If the close packed structures are considered as being built of layers of spheres then the difference between hexagonal close packing and face-centred cubic is how each layer is positioned relative to others. Whilst there are many ways that can be envisaged for a regular buildup of layers:
In the ideal hcp structure the unit cell axial ratio is. However, there are deviations from this in some metals where the unit cell is distorted in one direction but the structure still retains the hcp space group—remarkable all the elements have a ratio of lattice parameters c/a < 1.633. In others like Zn and Cd the deviations from the ideal change the symmetry of the structure and these have a lattice parameter ratio c/a > 1.85.

Face-centered cubic (cubic close packed)

More content relating to number of planes within structure and implications for glide/slide e.g. ductility.

Double hexagonal close packed

Similar to the ideal hcp structure, the perfect dhcp structure should have a lattice parameter ratio of In the real dhcp structures of 5 lanthanides variates between 1.596 and 1.6128. For the four known actinides dhcp lattices the corresponding number vary between 1.620 and 1.625.

Body centred cubic

This is not a close packed structure. In this each metal atom is at the centre of a cube with 8 nearest neighbors, however the 6 atoms at the centres of the adjacent cubes are only approximately 15% further away so the coordination number can therefore be considered to be 14 when these are ong one 4 fold axe structure becomes face-centred cubic.