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Q.(a) What are Etard Reaction and Gattermann Koch Reaction ? Give one example of each.

(b) Aldehydes are more reactive towards nucleophillic addition reactions than Ketones. Justify. OR
(a) What are Claisen-Schmidt condensation and Kolbe's Reaction ? Give one example of each.
(b) NH3 and its derivative do not show nucleophillic addition reactions with aldehydes and ketone in high acidic medium. Justify.
Punjab PsebPSEB Punjab Class 12 Board 2018Subjective· 4mImportance★★★★★
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Etard and Gattermann–Koch are both named routes to benzaldehyde from toluene and benzene respectively; aldehydes out-react ketones in nucleophilic addition because of both lower steric crowding and a more electrophilic carbonyl carbon.

  1. Etard Reaction: Toluene (or another aromatic compound bearing a −CH3-CH_3 group) is oxidised by chromyl chloride (CrO2Cl2CrO_2Cl_2) in carbon disulphide (CS2CS_2) to form a chromium complex, which on hydrolysis gives the aldehyde directly (avoiding over-oxidation to the carboxylic acid): C6H5CH3→CrO2Cl2, CS2(Cr-complex)→H3O+C6H5CHOC_6H_5CH_3 \xrightarrow{CrO_2Cl_2,\,CS_2} (\text{Cr-complex}) \xrightarrow{H_3O^+} C_6H_5CHO Gattermann–Koch Reaction: Benzene is treated with carbon monoxide (COCO) and hydrogen chloride (HClHCl) gas in the presence of anhydrous AlCl3AlCl_3 (and often CuClCuCl as catalyst) under pressure, effectively performing a Friedel–Crafts-type formylation (since formyl chloride, HCOClHCOCl, is not stable enough to isolate and use directly): C6H6+CO+HCl→CuClanhyd. AlCl3C6H5CHO+HClC_6H_6 + CO + HCl \xrightarrow[CuCl]{\text{anhyd. } AlCl_3} C_6H_5CHO + HCl
  2. Aldehydes more reactive than ketones toward nucleophilic addition:
  • Steric factor: In an aldehyde, the carbonyl carbon bears one alkyl/aryl group and one H; in a ketone, it bears two alkyl/aryl groups. The bulkier ketone carbonyl is more crowded, so an incoming nucleophile finds it harder to approach the carbonyl carbon — aldehydes are less hindered. …

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