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Question 37 of 56

Q.(i) Give examples of the following reactions: (m) Gattermann-Koch reaction (n) Kolbe-Schmidt reaction (o) Wolff-Kishner reduction.

(ii) Identify A, B, C and D in the following reactions: (p) benzoic acid (C6H5COOH) treated with CH3MgI, ether, gives A + B. (q) phenyl acetate (benzene ring bearing OCOCH3) treated with anhydrous AlCl3, CS2, heat, gives C + D. OR
(i) An organic compound A, of molecular formula C6H14O2, on acid-hydrolysis produces one molecule of ethanal and two molecules of ethanol from one molecule of A. Identify A. How can A be prepared?
(ii) How would you convert CH3CHO to CH3CH=CHCHO?
(iii) Write the appropriate reagents for the following two conversions: (r) benzaldehyde (C6H5CHO) to C6H5-C(=O)-CHOH-C6H5. (s) acetone (CH3COCH3) to pinacol (CH3)2C(OH)-C(OH)(CH3)2.
(iv) Distinguish between formic acid and acetaldehyde by a suitable chemical test.
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2016Subjective· 5mImportance★★★★★
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Three named-reaction examples, then Grignard-on-acid (gives a salt + methane, not further addition) and Fries rearrangement of phenyl acetate (giving ortho + para hydroxyacetophenone).

(i) Named reactions:

(m) Gattermann–Koch reaction: Benzene reacts with carbon monoxide and hydrogen chloride in the presence of anhydrous AlCl₃/CuCl catalyst under pressure to give benzaldehyde directly:

C6H6+CO+HCl→anhyd. AlCl3/CuClC6H5CHO+HClC_6H_6 + CO + HCl \xrightarrow{anhyd.\,AlCl_3/CuCl} C_6H_5CHO + HCl

(n) Kolbe–Schmidt reaction: Sodium phenoxide is heated with CO₂ under pressure (4–7 atm, 400 K), then the product is acidified, to give salicylic acid (2-hydroxybenzoic acid):

C6H5ONa+CO2→Δ, pressureC6H4(OH)(COONa)→H+C6H4(OH)COOHC_6H_5ONa + CO_2 \xrightarrow{\Delta,\,pressure} C_6H_4(OH)(COONa) \xrightarrow{H^+} C_6H_4(OH)COOH (salicylic acid)

(o) Wolff–Kishner reduction: An aldehyde or ketone is treated with hydrazine (NH2NH2NH_2NH_2) to form a hydrazone, which is then heated with a base (KOH) in a high-boiling solvent (ethylene glycol), reducing the carbonyl carbon fully to CH2CH_2 — e.g. acetophenone (C6H5COCH3C_6H_5COCH_3) reduces to ethylbenzene (C6H5CH2CH3C_6H_5CH_2CH_3).

(ii) Identify A–D:

(p) Benzoic acid + CH₃MgI, ether: A carboxylic acid is acidic, so the first equivalent of the Grignard reagent simply acts as a base — it abstracts the acidic –COOH proton rather than adding to the carbonyl. This produces methane gas and the magnesium salt of benzoic acid; the resulting carboxylate salt is unreactive to further Grignard addition, so the reaction stops here even with excess reagent. …

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