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Question 39 of 56

Q.(i) Write the structural formulae of the compounds A to F: (m) C6H5CONH2 --(Br2/KOH)--> A --(Br2/H2O)--> B ; (n) chlorobenzene --(Mg, dry ether)--> C --[(i) CO2/dry ether

(ii) H3O+]--> D ; (o) (CH3)3C-CHO --(conc. NaOH, Δ)--> E + F. (3 marks)
(ii) Convert the following: (p) Benzaldehyde to Cinnamic acid. (q) Acetic acid to acetaldehyde. (2 marks) OR
(i) What is the reason for the reducing property of formic acid? Give an example of its reducing property. (2 marks)
(ii) Mention the reagents used for the following conversions: (m) toluene --A--> benzaldehyde ; (n) CH3CHO --B--> CH3COOC2H5 ; (o) benzaldehyde --C--> PhC(=O)-CH(OH)-Ph ; (p) CH3COCH3 --D--> CH3-C(OH)(CH3)-CH2-CO-CH3 ; (q) CH3CH2COOH --E--> CH3-CH(Br)-COOH ; (r) CH3COCH3 --F--> CH3COCH2Br. (3 marks)
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2019Subjective· 5mImportance★★★★★
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Each sub-reaction is a named-reaction application: Hofmann bromamide degradation, Grignard carboxylation, Cannizzaro reaction (no α-H), Perkin reaction, and Rosenmund reduction.

(i)(m) Benzamide → A → B: C6H5CONH2→Br2/KOHC_6H_5CONH_2 \xrightarrow{Br_2/KOH} A = aniline (C6H5NH2C_6H_5NH_2), by the Hofmann bromamide degradation (amide loses one carbon to give the amine). Aniline is highly activated toward electrophilic bromination: C6H5NH2→Br2(aq)C_6H_5NH_2 \xrightarrow{Br_2(aq)} B = 2,4,6-tribromoaniline (white precipitate).

(i)(n) Chlorobenzene → C → D: C6H5Cl→Mg, dry etherC_6H_5Cl \xrightarrow{Mg,\ dry\ ether} C = phenylmagnesium chloride (C6H5MgClC_6H_5MgCl, a Grignard reagent). C6H5MgCl→(i) CO2/dry ether (ii) H3O+C_6H_5MgCl \xrightarrow{(i)\ CO_2/dry\ ether\ (ii)\ H_3O^+} D = benzoic acid (C6H5COOHC_6H_5COOH).

(i)(o) Pivaldehyde + conc. NaOH, Δ: (CH3)3C(CH_3)_3C-CHOCHO has no α-hydrogen, so it undergoes the Cannizzaro reaction: one molecule is reduced, the other oxidised.

E = (CH3)3C(CH_3)_3C-CH2OHCH_2OH (neopentyl alcohol) and F = (CH3)3C(CH_3)_3C-COOHCOOH (pivalic acid, as its sodium salt before acidification).

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