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Example · Example 4

Q.Explain, in terms of their structures, why white phosphorus is far more reactive than red phosphorus.

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White phosphorus exists as discrete P4\text{P}_4 tetrahedral molecules: four phosphorus atoms at the corners of a tetrahedron, each bonded to the other three, giving every P-P-P bond angle inside the cage a strained 60∘60^\circ -- far below phosphorus's normally preferred bond angle of around 100∘100^\circ. This severe angular strain stores considerable extra energy in the molecule, and the separate P4\text{P}_4 units are held to each other only by weak van der Waals forces. Both factors make white phosphorus highly reactive: it is spontaneously flammable in air around 30∘C30^\circ\text{C} and acutely poisonous. Red phosphorus, obtained by heating white phosphorus in an inert atmosphere, is instead a polymeric solid: one P-P bond of the tetrahedron is opened and the resulting units link into long, cross-linked chains, releasing the 60∘60^\circ-angle strain almost entirely. Without that stored strain, and with the atoms held in an extended, more …

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