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Q.Explain the difference in properties of diamond and graphite on the basis of their structures.

Kerala DhseKerala DHSE Plus One Board 2022Subjective· 2mImportance★★★★★
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The two allotropes differ completely in structure — a rigid 3D tetrahedral network (diamond) vs. flat layers of hexagons with delocalised electrons (graphite) — and this directly explains their very different properties.

Diamond: Each carbon atom is sp3 hybridised and forms four strong covalent (sigma) bonds to four other carbon atoms arranged tetrahedrally, extending in all three dimensions as a giant, rigid, continuous network. Because every valence electron is locked into a strong C–C sigma bond, there are no free/delocalised electrons. Consequences:

  • Extremely hard (hardest known natural substance) — the rigid, strongly bonded 3D lattice resists deformation.
  • Does not conduct electricity — no free electrons or ions are available to carry current.
  • Very high melting point, since strong covalent bonds must be broken throughout the lattice.

Graphite: Each carbon atom is sp2 hybridised, forming three sigma bonds to three neighbouring carbons within a flat hexagonal (honeycomb) layer. The fourth valence electron of each carbon occupies a delocalised p-orbital system spread across the whole layer, similar to benzene. The layers themselves are held together only by weak van der Waals forces. Consequences: …

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