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Q.Despite being an electron withdrawing group, why is Cl-group ortho- and para-directing in electrophilic aromatic substitution? Give reason.

Rajasthan RbseRajasthan Board Senior Secondary Examination 2024Subjective· 2mImportance★★★★★
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Chlorine exerts two opposing effects on the ring - a ring-deactivating inductive (-I) effect that operates everywhere, and a ring-activating (at ortho/para only) resonance (+M) effect from its lone pairs - and it is the resonance effect that decides where substitution happens.

Chlorine is more electronegative than carbon, so it withdraws electron density from the ring through the sigma-bond framework (-I / inductive effect) - this makes the whole ring less electron-rich than benzene, i.e. Cl is overall a deactivating group (slows down electrophilic substitution compared to benzene).

However, chlorine also has lone pairs of electrons that can be donated into the ring's pi system through resonance (+M / mesomeric effect); this resonance donation increases electron density specifically at the positions ortho and para to Cl (by drawing resonance structures with a negative charge appearing at ortho/para carbons), NOT at the meta position. …

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