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Q.In the following pairs of halogen compound which would undergo SN2 reaction faster?

(i) [ring]–CH2Cl and [ring]–Cl (ring-attached pair, see figure)
(ii) [chain]–I and [chain]–Cl (chain-attached pair, see figure)
Two pairs of halogen compounds drawn as skeletal/line structures. Pair (i): a hexagonal ring (drawn as a plain hexagon, no explicit double — Class 12 Chemistry question
Figure
Haryana BsehBSEH Intermediate Board 2023Subjective· 2mImportance★★★★★
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SN2S_N2 rate is governed by how easily the C–halogen bond can be attacked and how good a leaving group the halide is; benzylic C–Cl beats aryl C–Cl, and C–I beats C–Cl as a leaving group.

(i) Between a benzylic chloride (Ar–CH2Cl\text{Ar–CH}_2\text{Cl}) and an aryl chloride (Ar–Cl\text{Ar–Cl}): in aryl halides the C–Cl bond has partial double-bond character because a lone pair on Cl is delocalised into the aromatic ring, and the carbon bearing Cl is sp2sp^2-hybridised (shorter, stronger, less polar C–Cl bond); this makes aryl halides highly resistant to nucleophilic substitution. In the benzylic compound, Cl is attached to an sp3sp^3 carbon outside the ring, so this resonance stabilisation does not apply to the C–Cl bond itself, and the ring instead stabilises the developing transition state/carbocation character — so the benzylic (ring–CH₂Cl) compound undergoes SN2S_N2 substitution far faster than the aryl (ring–Cl) compound.

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