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

Andhra Pradesh BieapBIEAP Intermediate Board (1st Year) 2023Subjective· 4mImportance★★★★★
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Diamond's rigid 3-D sp3 network makes it hard and insulating; graphite's layered sp2 structure with delocalised electrons makes it soft, slippery and conducting.

Diamond and graphite are both allotropes of carbon, but their very different structures give them very different properties.

Diamond:

  • Each carbon atom is sp3 hybridised and forms 4 strong covalent (sigma) bonds to 4 other carbon atoms in a tetrahedral arrangement, building up a rigid, 3-dimensional giant covalent network.
  • All 4 valence electrons of each carbon are used in localised C-C sigma bonds — there are no free/delocalised electrons.
  • Consequence: diamond is extremely hard (hardest known natural substance), has a very high melting point (breaking the crystal means breaking many strong covalent bonds), and is an electrical insulator (no free electrons or ions to carry current).

Graphite:

  • Each carbon atom is sp2 hybridised and forms 3 sigma bonds to 3 neighbouring carbons, building flat hexagonal (honeycomb) layers/sheets.
  • The 4th valence electron on each carbon remains in an unhybridised p-orbital and is delocalised over the whole layer (forming a pi-electron cloud), similar to a giant conjugated system. …

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