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4.2.3.3Graphene and fullerenes

AQA GCSE Chemistry Foundation (8462), Foundation tier · Bonding, structure and the properties of matter › Structure and bonding of carbon

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Revision notes

Graphene (a single layer of graphite) and fullerenes (hollow carbon molecules such as buckminsterfullerene and carbon nanotubes). You need to recognise them from diagrams and descriptions, explain the properties of graphene, and give uses of fullerenes and nanotubes.

Key facts

  • Graphene = a single layer of graphite (one atom thick)
  • Graphene: very strong (covalent bonds), conducts (delocalised electrons) → electronics, composites
  • Fullerenes = hollow molecules of carbon; hexagonal rings, sometimes rings of 5 or 7 atoms
  • Buckminsterfullerene: C60, spherical, the first fullerene discovered
  • Carbon nanotubes = cylindrical fullerenes with a very high length to diameter ratio
  • Nanotubes: very strong, conduct → nanotechnology, electronics, materials
  • Fullerene uses: drug delivery, lubricants, catalysts

Notes

Graphene

diagram
  • Graphene is a single layer of graphite: carbon atoms in hexagonal rings, just one atom thick.
  • one atom thickeach C bondedto 3 others
    Graphene: a single layer of graphite.
  • Each carbon atom forms three strong covalent bonds, and one electron from each atom is delocalised.
  • It is very strong, because the atoms are held together by strong covalent bonds across the whole layer.
  • It conducts electricity, because the delocalised electrons can move across the layer.
  • These properties, and the fact that it is so thin and light, make graphene useful in electronics and in composites (adding graphene to another material can make it much stronger).

Fullerenes

diagram
  • Fullerenes are molecules of carbon atoms with hollow shapes.
  • Their structure is based on hexagonal rings of carbon atoms, but they may also contain rings of five or seven carbon atoms.
  • The first fullerene to be discovered was buckminsterfullerene, C60. Its molecules are spherical, made of rings of five and six carbon atoms, like the pattern on a football.
  • hollow sphere of 60carbon atoms in ringsof 5 and 6 atomsbuckminsterfullerene, C60
    C60: the front half of the ball is drawn. Like a football.
  • Uses of fullerenes: carrying drugs into the body (the hollow cage can hold a drug molecule), lubricants, and catalysts (they have a large surface area).

Carbon nanotubes

diagram
  • Carbon nanotubes are cylindrical fullerenes: tubes of carbon atoms with a very high length to diameter ratio (very long compared with their width).
  • a cylinder of hexagons: very long, very narrow
    Nanotubes have a very high length to diameter ratio.
  • They are very strong (high tensile strength) because of their strong covalent bonds, and they conduct electricity because they have delocalised electrons.
  • Their properties make them useful in nanotechnology, electronics and materials, e.g. reinforcing the frames of tennis rackets.

How to answer each type of question

Recognise and describe fullerenes

1 to 3 marksGrade 4
  1. A closed, hollow cage is a fullerene such as C60; a long hollow tube is a nanotube; a flat single sheet of hexagons is graphene.
  2. Learn the key facts: C60, spherical, rings of five and six (fullerenes can also have rings of seven).

Example. (a) Give the formula of buckminsterfullerene.
(b) Describe the shape of a molecule of buckminsterfullerene.
(c) Fullerenes contain rings of six carbon atoms. Give one other size of ring that fullerenes can contain.

Show the model answerHide the model answer
(a) C60 (1)
(b) A hollow sphere / ball (1)
(c) Five (or seven) carbon atoms (1)

Give uses of fullerenes and nanotubes

1 to 2 marksGrade 5
  1. Nanotubes: nanotechnology, electronics, reinforcing materials.
  2. Other fullerenes: drug delivery, lubricants, catalysts.
  3. Give one clear use per mark.

Example. Give one use of carbon nanotubes and one use of other fullerenes.

Show the model answerHide the model answer
Nanotubes, any one from: reinforcing materials such as tennis rackets; electronics; nanotechnology (1).
Fullerenes, any one from: delivering drugs in the body; lubricants; catalysts (1).

Don’t lose marks

  • Calling fullerenes giant covalent structures. They are molecules (hollow cages or tubes).
  • Saying graphene conducts because it is a metal or because it has free ions.
  • Saying fullerenes contain only hexagonal rings: they can also contain rings of five or seven carbon atoms.
  • Mixing up the shapes: buckminsterfullerene is a sphere; nanotubes are cylinders.
  • Forgetting that graphene is only one atom thick.

More tips

Memory tricks

  • Graphene = graphite with only one layer. Same bonding (3 bonds + 1 delocalised electron per atom), so it is strong and conducts.
  • C60: 60 carbon atoms shaped like a football. Buckyball = sphere; nanotube = cylinder.
  • Nanotube uses: tiny tech (nanotechnology), electronics and tough materials.

Exam technique

  • To explain a property of graphene, use the same ideas as for graphite: covalent bonds for strength, delocalised electrons for conductivity.
  • In 'give a use' questions, one clear use per mark is enough; extra wrong answers can cancel out a right one.
  • Read diagrams carefully: a closed hollow cage is a fullerene, a long tube is a nanotube, and a flat single sheet of hexagons is graphene.

What each grade needs

What you need to be able to do, from the first marks up to the top grade.

  1. Grade 3
    Describe graphene as one layer of graphiteGraphene is a single layer of carbon atoms in hexagonal rings, one atom thick.
  2. Grade 4
    Describe fullerenes as hollow carbon moleculesThey are based on hexagonal rings of carbon atoms, sometimes with rings of five or seven atoms.
  3. Grade 4
    Name buckminsterfullerene and give its formulaThe first fullerene discovered: C60, a hollow, spherical molecule.
  4. Grade 5
    Give uses of fullerenes and nanotubesFullerenes: drug delivery, lubricants, catalysts; nanotubes: nanotechnology, electronics and strengthening materials.

Quick recall

Cover the answers and test yourself. The app has these as flashcards that come back just before you'd forget them.

Graphene and fullerenes are forms of carbon. Describe the shape of a Buckminsterfullerene molecule.
a hollow sphere (ball)
Fullerenes are molecules of carbon atoms with hollow shapes. Give two uses of fullerenes.
e.g. delivering drugs into the body; lubricants
Carbon nanotubes are cylindrical fullerenes. A carbon nanotube has a diameter of 1.5 nm and a length of 0.30 mm.
1 mm = 1 × 106 nm
Give the length of the nanotube in nanometres.
3.0 × 105 nm

Sample questions

Written for this site in the style of AQA exam questions. They are not taken from real past papers.

Question 1Easy4 marks
Graphene and fullerenes are forms of carbon.
(a) What is graphene?
Tick (✓) one box.[1]
  • A single layer of graphite
  • A form of diamond
  • A polymer of carbon and hydrogen
  • A compound of carbon and oxygen
(b) What is the molecular formula of Buckminsterfullerene?
Tick (✓) one box.[1]
  • C6
  • C12
  • C60
  • C600
(c) Describe the shape of a Buckminsterfullerene molecule.[1]
(d) Give one use of carbon nanotubes.[1]
Show the answer and mark scheme
(a) Answer: A single layer of graphite
(b) Answer: C60
(c) Answer: a hollow sphere (ball)
  • (hollow) sphere / spherical / ball
(d) Answer: e.g. reinforcing materials such as tennis rackets
  • reinforcing materials (e.g. in tennis rackets / bikes) / electronics / nanotechnology
Question 2Medium6 marks
Graphene is a single layer of graphite. It is only one atom thick.
(a) Graphene is useful in electronics.
Explain why, in terms of its structure and bonding.[2]
(b) Graphene is added to other materials to make strong composites.
Explain why graphene is very strong.[2]
(c) Graphite is soft and slippery, but graphene is not.
Suggest why.[2]
Show the answer and mark scheme
(a) Answer: Each carbon atom forms three covalent bonds, so one electron from each atom is delocalised. The delocalised electrons can move through the layer, so graphene conducts electricity.
  • each carbon atom forms three covalent bonds, so one electron from each carbon atom is delocalised
  • the delocalised electrons can move through the layer, so graphene conducts electricity
(b) Answer: Each carbon atom is joined to three others by strong covalent bonds in a continuous hexagonal network, so a lot of force is needed to break it.
  • each carbon atom is joined to three others by strong covalent bonds
  • in a continuous / giant hexagonal network (so many bonds would have to break)
(c) Answer: In graphite the layers are held together only by weak forces, so they slide over each other. Graphene is a single layer, so there are no layers to slide.
  • in graphite, the layers are held together only by weak forces / there are no covalent bonds between the layers, so the layers slide over each other
  • graphene is a single layer, so there are no layers to slide over each other

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