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Chemistry · Ch 14 — The p-Block Elements

Interhalogen Compounds

14.22

Interhalogen Compounds

What Is an Interhalogen Compound?

When two different halogens combine directly, they produce an interhalogen compound. Because halogens differ in size and electronegativity, these compounds always pair a larger, more electropositive halogen XX with a smaller, more electronegative one X′X'. Depending on how many atoms of X′X' attach to XX, four general families are possible:

XX′,XX3′,XX5′,XX7′XX', \quad XX'_3, \quad XX'_5, \quad XX'_7

The key trend to remember is that the bigger the size gap between XX and X′X', the more atoms of X′X' can pack around the central atom XX. Since fluorine is the smallest and most electronegative halogen, it forms the interhalogens with the highest X′X' count. This is exactly why the radius ratio between iodine and fluorine is the largest among all halogen pairs, which lets iodine accommodate a full seven fluorine atoms — giving the formula IF7IF_7, the interhalogen compound with the maximum number of atoms in a single molecule.

Preparation

Interhalogen compounds are made either by direct combination of the two halogens or by reacting a halogen with an already-formed lower interhalogen compound. Crucially, the exact product obtained (mono-, tri-, penta-, or heptahalide) depends on the reaction conditions — especially the ratio in which the two halogens are mixed and whether one of them is present in excess. A few representative examples:

Cl2+F2→437 K2ClF(equal volumes)Cl_2 + F_2 \xrightarrow{437\,K} 2ClF \quad \text{(equal volumes)}

Cl2+3F2→573 K2ClF3(F2 in excess)Cl_2 + 3F_2 \xrightarrow{573\,K} 2ClF_3 \quad \text{(F}_2\text{ in excess)}

I2+Cl2→2ICl(equimolar)I_2 + Cl_2 \rightarrow 2ICl \quad \text{(equimolar)}

I2+3Cl2→2ICl3(Cl2 in excess)I_2 + 3Cl_2 \rightarrow 2ICl_3 \quad \text{(Cl}_2\text{ in excess)}

Br2+3F2→2BrF3(F2 diluted with N2)Br_2 + 3F_2 \rightarrow 2BrF_3 \quad \text{(F}_2\text{ diluted with N}_2\text{)}

Br2+5F2→2BrF5(F2 in excess)Br_2 + 5F_2 \rightarrow 2BrF_5 \quad \text{(F}_2\text{ in excess)}

Notice the pattern: keeping the heavier halogen (Cl2Cl_2, Br2Br_2, I2I_2) in excess tends to stop the reaction at a lower interhalogen, while flooding the mixture with fluorine drives it toward the higher fluorides.

Physical Properties

The properties of some common interhalogens are summarised below.

TypeFormulaPhysical state and colourStructure
XX′XX'ClFcolourless gas–
BrFpale brown gas–
IF (very unstable)detected spectroscopically–
BrCl (pure solid known at room temp.)gas–
IClruby red solid (α-form)–
brown red solid (β-form)–
IBrblack solid–
XX3′XX'_3ClF3colourless gasBent T-shaped
BrF3yellow green liquidBent T-shaped
IF3yellow powderBent T-shaped (?)
ICl3 (dimerises as Cl-bridged I2Cl6)orange solidBent T-shaped (?)
XX5′XX'_5IF5colourless gas, solid below 77 KSquare pyramidal
BrF5colourless liquidSquare pyramidal
ClF5colourless liquidSquare pyramidal
XX7′XX'_7IF7colourless gasPentagonal bipyramidal

All of these are covalent, diamagnetic molecules. Except for ClFClF, which stays gaseous at 298 K, the rest exist as volatile liquids or solids. As a family, their melting and boiling points sit roughly between the values of the two parent halogens, though slightly higher than a simple average would predict.

Reactivity and Hydrolysis

Interhalogens tend to be more reactive than the halogens themselves (except fluorine). The reason lies in bond strength: the XX–X′X' bond in an interhalogen is weaker than the XX–XX bond within a pure halogen molecule, fluorine's own FF–FF bond being the one exception. A weaker bond breaks more readily, so interhalogens react faster. …

Table 7.11Some Properties of Interhalogen Compounds [Footnote: a Very unstable; b The pure solid is known at room temperature; c Dimerises as Cl–bridged dimer (I2Cl6)]
TypeFormulaPhysical state and colourStructure
XX'1ClFcolourless gas–
BrFpale brown gas–
IFᵃdetected spectroscopically–
BrClᵇgas–
IClruby red solid (α-form)–
brown red solid (β-form)–
IBrblack solid–
XX'3ClF3colourless gasBent T-shaped
BrF3yellow green liquidBent T-shaped
IF3yellow powderBent T-shaped (?)
ICl3ᶜorange solidBent T-shaped (?)
XX'5IF5colourless gas but solid below 77 KSquare pyramidal