Allotropes of Carbon: Diamond, Graphite, Graphene and Fullerenes
Aligned to the AQA 8462 specification
- Level
- Intermediate
- Reading time
- 8 min
- Published
- 2 July 2026
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Key takeaways
- In diamond each carbon atom forms four covalent bonds in a giant covalent structure, making it very hard with a very high melting point and unable to conduct electricity because it has no free electrons.
- In graphite each carbon forms three covalent bonds in layers of hexagonal rings with no bonds between layers, so the layers slide (soft and slippery) and one delocalised electron per atom lets it conduct.
- Graphene is a single layer of graphite, one atom thick; it is strong and conducts electricity, so it is used in electronics and composites.
- Fullerenes are molecules of carbon with hollow shapes based on hexagonal rings; the first discovered was Buckminsterfullerene, C60, a spherical molecule.
- Carbon nanotubes are cylindrical fullerenes with a very high length-to-diameter ratio; they are strong and conduct, so they are used in electronics and to strengthen materials.
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Key terms
- Allotrope
- One of two or more different structural forms of the same element, such as diamond and graphite, which are both made only of carbon.
- Fullerene
- A molecule of carbon with a hollow shape based on hexagonal rings, which may also contain rings of five or seven carbon atoms.
- Buckminsterfullerene
- The first fullerene to be discovered, a spherical molecule with the formula C60.
- Carbon nanotube
- A cylindrical fullerene with a very high length-to-diameter ratio, useful for its strength and electrical conductivity.
- Graphene
- A single layer of graphite, one atom thick, made of carbon atoms in hexagonal rings.
Frequently asked questions
In graphite each carbon forms only three bonds, leaving one delocalised electron per atom that is free to move and carry charge. In diamond every carbon forms four bonds, so all electrons are held in bonds and none are free to move, so diamond does not conduct.
Diamond is a rigid 3D network in which every carbon is held by four strong covalent bonds. Graphite is made of layers with no bonds between them, so the layers slide over each other easily, making it soft and a good lubricant.
Graphene is a single flat layer of graphite, one atom thick, made of hexagonal rings. Fullerenes are hollow carbon molecules (spheres or tubes) based on hexagonal rings; the first was C60, and carbon nanotubes are long cylindrical fullerenes.
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