Chemistry · Ch 11 — The p-Block Elements
Diborane, B2H6
Diborane, B2H6
Diborane,
Diborane is the simplest known boron hydride.
Preparation. In the laboratory, it can be made by treating boron trifluoride with lithium aluminium hydride in diethyl ether:
A convenient alternative oxidises sodium borohydride with iodine:
Industrially, diborane is manufactured by reacting boron trifluoride with sodium hydride at 450 K:
Physical/chemical behaviour. Diborane is a colourless, highly toxic gas (b.p. 180 K) that catches fire spontaneously in air, burning with a large release of energy:
Most higher boranes are similarly spontaneously flammable. Diborane hydrolyses readily to give boric acid:
Adducts with Lewis bases. Diborane undergoes cleavage reactions with Lewis bases (L) to give adducts of the type :
Its reaction with ammonia is different — it first forms , better written as the ionic species ; further heating converts this into borazine, :
Borazine is nicknamed "inorganic benzene" because it has a six-membered ring of alternating B–H and N–H units, geometrically analogous to benzene.
Structure. In diborane (Fig. 11.2a), the two boron atoms and the four terminal hydrogens all lie in one plane, with two bridging hydrogens above and below this plane. The four terminal B–H bonds are ordinary two-centre-two-electron bonds; the two bridging B–H–B bonds are unusual three-centre-two-electron bonds, often called "banana bonds" (Fig. 11.2b). Each boron is hybridised: of its four hybrids, one is left without an electron and takes part in the electron-deficient bridge. …
What this figure shows. A ball-and-stick style geometric diagram of the diborane molecule showing two boron atoms (circled B) connected in the centre, with four terminal hydrogen atoms (circled H, two on each boron) drawn as a wide splayed 'bowtie'/hourglass shape lying in the plane of the page, each terminal B-H bond making an angle of 120 degrees with a labelled bond length of 119 pm. Two additional bridging hydrogen atoms (circled H) are shown above and below the B-B axis, connected to both boron atoms by dotted lines forming a diamond/rhombus bridge, with an angle of 97 degrees marked at boron and a bridge bond length of 134 pm labelled, illustrating the no …
What this figure shows. Two side-by-side schematic bonding diagrams of diborane. The left diagram shows two boron atoms (labelled B) each surrounded by four lobed sp3 hybrid orbitals drawn as circles/loops (some shaded solid, some outlined with broken/dashed lines) with terminal H atoms at the outer tips of the shaded lobes and the two unshaded (broken-line) lobes from each boron pointing toward each other in the bridge region, illustrating the sp3 hybridisation with one empty hybrid per boron used for bridge bonding. The right diagram is a simplified sketch of the two three-centre-two-electron 'banana' bridge bonds: two B atoms connected by two curved banana-shaped bond lines that each loop through a bridging H atom above and below, with two additional terminal H atoms attached to each B by straight lines, visually depicting the curved/banana shape of the bridging B-H-B bonds. …