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Q.Give reasons for the following observations :

(a) Benzoic acid does not undergo Friedel Craft reaction.
(b) Ethanal is more reactive towards nucleophilic addition reaction than propanone.
Manipur CohsemCOHSEM Manipur Higher Secondary Board 2025Subjective· 2mImportance★★★★★
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Benzoic acid's own strongly electron-withdrawing COOH group both deactivates the ring and poisons the AlCl₃ catalyst, while ethanal simply has less steric bulk and a more electrophilic carbonyl than propanone.

  1. Benzoic acid does not undergo Friedel-Crafts reaction: The −COOH-COOH group is a strongly electron-withdrawing, deactivating substituent (by both resonance and inductive effects), which makes the aromatic ring highly electron-poor and unable to attack the electrophile generated in a Friedel-Crafts reaction. In addition, the carboxylic acid's oxygen lone pairs coordinate to (complex with) the Lewis acid catalyst (AlCl3AlCl_3), effectively deactivating/poisoning the catalyst itself and preventing it from generating the required electrophile at all. Both effects together mean benzoic acid simply does not undergo Friedel-Crafts alkylation or acylation.
  2. Ethanal is more reactive than propanone towards nucleophilic addition: Ethanal (acetaldehyde), CH3CHOCH_3CHO, has only one alkyl group (CH3CH_3) and one H attached to the carbonyl carbon, whereas propanone (acetone), (CH3)2CO(CH_3)_2CO, has two alkyl groups. This makes ethanal both:
  • Less sterically hindered — easier for the nucleophile to approach the carbonyl carbon. …

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