Interhalogen Compounds


An interhalogen compound is a molecule which contains two or more different halogen atoms (Fluorine, Chlorine, Bromine, Iodine, or Astatine) and no atoms of elements from any other group.

General Formula: XX'n
Where X is the larger, less electronegative halogen and X' is the smaller, more electronegative halogen. (n = 1, 3, 5, or 7)

1. General Characteristics

  • Covalent Nature: All interhalogen compounds are covalent in nature due to the small difference in electronegativity.
  • Physical State: They can exist as gases, liquids, or solids at room temperature depending on their molecular weight.
  • Reactivity: They are generally more reactive than the parent halogens (except Fluorine) because the X-X' bond is weaker than the X-X bond.
  • Diamagnetism: These compounds are diamagnetic as they contain only paired electrons.

2. Common Types and Examples

Type Structure/Shape Examples
XX' Linear ClF, BrF, ICl, IBr
XX'3 T-shaped ClF3, BrF3, ICl3
XX'5 Square Pyramidal ClF5, BrF5, IF5
XX'7 Pentagonal Bipyramidal IF7

3. Preparation of Interhalogen Compounds

  • Direct combination of halogens under controlled conditions.
  • Example: Cl2 + F2 → ClF

4. Uses of Interhalogen Compounds

  • Strong oxidizing agents in chemical reactions.
  • Used in nuclear fuel processing (e.g., ClF3).
  • Applied in fluorination reactions.

5. Key Chemical Property: Hydrolysis

Interhalogen compounds undergo hydrolysis to yield a halide ion (from the smaller halogen) and an oxyhalide (from the larger halogen):

XX' + H2O → HX' + HOX

Note: Iodine heptafluoride (IF7) is the only known member of the XX'7 series due to the large size of the Iodine atom allowing seven small Fluorine atoms to fit around it.

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