Chemistry · Ch 7 — The p-Block Elements
Sulphur — Allotropic Forms
Sulphur — Allotropic Forms
Sulphur — Allotropic Forms
Sulphur exhibits numerous allotropes — different structural forms of the same element — of which the yellow rhombic (-sulphur) and monoclinic (-sulphur) forms are by far the most important. At ordinary room temperature, rhombic sulphur is the thermodynamically stable form; on heating above 369 K it converts to monoclinic sulphur.
Rhombic Sulphur (α-Sulphur)
Rhombic sulphur is yellow, melts at 385.8 K, and has a specific gravity of 2.06. Its crystals form when a solution of roll sulphur in carbon disulphide () is allowed to evaporate. It is insoluble in water, only partly soluble in benzene, alcohol and ether, but readily soluble in .
Monoclinic Sulphur (β-Sulphur)
Monoclinic sulphur melts at 393 K and has a specific gravity of 1.98; like the rhombic form it dissolves in . It is made starting from rhombic sulphur: it is melted in a dish and left to cool until a solid crust forms over the top; two holes are then made in the crust and the liquid sulphur still underneath is poured out. Removing the crust reveals colourless, needle-shaped crystals of β-sulphur.
β-sulphur is stable above 369 K and reverts to α-sulphur below that temperature; conversely, α-sulphur, stable below 369 K, converts to β-sulphur above it. At exactly 369 K — the transition temperature — both forms coexist and are simultaneously stable.
Molecular Structure
Both rhombic and monoclinic sulphur are built from molecules, which simply pack differently in the two crystal lattices. In both forms, the eight-membered ring is puckered into a characteristic crown shape, illustrated in part (a) of the figure, with an S–S bond length of 204 pm and an internal bond angle of about 107°. …
What this figure shows. Two separate ball-and-stick ring diagrams side by side, each sulphur atom drawn as a purple/lavender sphere labelled 'S', connected by dark navy-blue bond lines, labelled (a) and (b) beneath. (a) S8 ring (rhombic sulphur): eight S atoms joined into a closed puckered ring drawn in a zig-zag 'crown' shape — alternating atoms sit in an upper row and a lower row (roughly 4 atoms upper-front, 4 atoms lower-back, giving a folded/puckered octagon, not flat). One S-S bond (left side of the ring) is labelled with the distance '204 pm'. One internal bond angle at the top-middle atom is marked with a small dashed arc and labelled '107 degrees'. (b) S6 ring (cyclo-S6): six S atoms joined into a closed ring drawn in a 'chair' conformation (like cyclohexane's chair) — one atom at the top apex, two atoms angling down-left and down-right beneath it, and so on to a bottom apex atom, giving a zig-zag hexagonal chair shape. One S-S bond (upper-left region) is labelled '205.7 pm'. One interna …