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Edexcel IAL Chemistry 17.14 tetrahedral transition-metal complexes

Use the ligand size and coordination number: large chloride ligands often give four-coordinate tetrahedral complexes with about 109.5° bond angles.

Syllabus
First assessment 2019
Course
Chemistry YCH11
Level
A2

Exam points

  • Identify tetrahedral complexes such as [CuCl4]2- or chloro cobalt complexes.
  • Explain four-coordination by large chloride ligands causing steric hindrance.
  • Draw optical isomers when a tetrahedral metal centre has four different ligands.

17.14—Transition metal ions may form tetrahedral complexes with relatively large ions such as Cl- question 1

[Maximum number: 1]

21
Iron Chemistry

Iron is a typical transition metal. Due to the similar energies of the 3d and 4s electrons, iron forms compounds in a number of oxidation states.

Iron(II) and iron(III) are the most common oxidation states, and iron(III) is the most stable.

Iron ions form many complexes, including that in haemoglobin which is responsible for oxygen transport in the blood of most vertebrates. The haemoglobin-iron complex with oxygen is responsible for the red colour of blood.

Iron(III) ions may be detected in solution by the addition of thioglycolic acid (HSCHX2COOH\ce{HSCH2COOH}). All the water ligands of the iron(III) ion are replaced giving a complex with an intense red colour which can be detected in very low concentrations.

The complexes of iron(II) and iron(III) usually have a coordination number of six and are octahedral but the chloro complexes have a coordination number of four and are tetrahedral.

Iron and its compounds can act as catalysts. The element catalyses the Haber process, acting as a typical heterogeneous catalyst. However, the compounds and complexes of iron are usually homogeneous catalysts.

Give a possible reason why the chloro complexes of iron ions have a coordination number of four rather than six.

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