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Q.Explain why haloarenes are less reactive than haloalkanes.

Mizoram MbseMizoram Board of School Education HSSLC 2024Subjective· 2mImportance★★★★★
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Resonance delocalizes the halogen's lone pair into the aromatic ring, strengthening the C-X bond and making the ring electron-rich — both effects hinder nucleophilic substitution on haloarenes compared to haloalkanes.

1. Resonance (C-X bond gets partial double-bond character):

In a haloarene (e.g. chlorobenzene), one of the lone pairs on the halogen is delocalized into the aromatic ring through resonance:

C6H5-Cl  ↔  (ring resonance structures with C=Cl+ character)C_6H_5\text{-}Cl \;\leftrightarrow\; \text{(ring resonance structures with }C=Cl^+\text{ character)}

This gives the C–Cl bond partial double-bond character, making it shorter and stronger than the pure single C–Cl bond in a haloalkane, and much harder to break in a nucleophilic substitution.

2. Difference in hybridization of the carbon bearing the halogen:

In haloarenes, the carbon attached to the halogen is sp2^2-hybridized (aromatic ring carbon), whereas in haloalkanes it is sp3^3-hybridized. An sp2^2 carbon has a greater percentage of s-character (33%, vs 25% for sp3^3), so it is more electronegative and holds the bonding electron pair (and hence the halogen) more tightly, strengthening the C–X bond further.

3. Instability of the phenyl cation (blocks SN1): …

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