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NCERT Exemplar · Q41

Q.Which of the following compounds can be classified as aryl halides? (Two or more than two options may be correct.)

(i) p-ClC6H4CH2CH(CH3)2\mathrm{p\text{-}ClC_6H_4CH_2CH(CH_3)_2}
(ii) p-CH3CHCl(C6H4)CH2CH3\mathrm{p\text{-}CH_3CHCl(C_6H_4)CH_2CH_3}
(iii) o-BrH2C-C6H4CH(CH3)CH2CH3\mathrm{o\text{-}BrH_2C\text{-}C_6H_4CH(CH_3)CH_2CH_3}
(iv) C6H5-Cl\mathrm{C_6H_5\text{-}Cl}
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Aryl halides have the halogen directly attached to an aromatic ring carbon. Only options (i) and (iv) satisfy this condition; (ii) and (iii) have the halogen on a side-chain carbon attached to the ring, making them benzylic (alkyl) halides, not aryl halides.

Concept first: What makes a halide “aryl”?

The classification hinges on where the halogen atom is bonded. In an aryl halide, the halogen is directly attached to a carbon that is part of an aromatic ring (like benzene). If the halogen is on a carbon that is not part of the ring — even if the molecule contains an aromatic ring — it is an alkyl (or benzylic, allylic, etc.) halide, not an aryl halide.

The key test: Is the halogen bonded to an sp2sp^2 carbon of the aromatic ring, or to an sp3sp^3 carbon outside it?

Let’s examine each option.

  1. Option (i): p-ClC6H4CH2CH(CH3)2\mathrm{p\text{-}ClC_6H_4CH_2CH(CH_3)_2}

    The chlorine is attached to the benzene ring directly (the p-ClC6H4\mathrm{p\text{-}ClC_6H_4} part). That looks like an aryl halide — but wait. The structure is: a para-chlorophenyl group attached to a CH2CH(CH3)2\mathrm{CH_2CH(CH_3)_2} side chain. The Cl is on the ring carbon. So this is an aryl halide?

    Actually, check carefully: The formula is written as p-ClC6H4CH2CH(CH3)2\mathrm{p\text{-}ClC_6H_4CH_2CH(CH_3)_2}. The Cl is on the ring. So (i) is an aryl halide.

    Watch out

    Don’t be misled by the long alkyl chain — the halogen’s position relative to the ring is what matters. Here, Cl is directly on the ring.

  2. Option (ii): p-CH3CHCl(C6H4)CH2CH3\mathrm{p\text{-}CH_3CHCl(C_6H_4)CH_2CH_3}

    This is written as a para-substituted benzene: the substituents are CH3CHCl−\mathrm{CH_3CHCl-} and CH2CH3−\mathrm{CH_2CH_3-} on opposite sides. The chlorine is on the carbon of the ethyl group attached to the ring — that carbon is sp3sp^3 hybridized, not part of the aromatic ring. So the halogen is on a side-chain carbon. This is an alkyl halide (specifically a benzylic halide, since the carbon bearing Cl is directly attached to the ring).

    So (ii) is not an aryl halide. …

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