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Q.How is benzaldehyde prepared from benzal chloride? How does it react with HCN? Why does benzaldehyde respond to Cannizzaro reaction? [2+2+1=5] OR

(a) How can you prepare primary amine by the help of Schmidt reaction? [2]
(b) Discuss the different products prepared on bromination of aniline. [3]
Odisha ChseOdisha CHSE +2 Science Board Exam 2025Subjective· 5mImportance★★★★★
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Benzal chloride hydrolyses to benzaldehyde; benzaldehyde adds HCN to form a cyanohydrin; and because benzaldehyde has no α-hydrogen, in strong base it disproportionates (Cannizzaro reaction) into benzyl alcohol and benzoate rather than undergoing aldol condensation. [OR: Schmidt reaction degrades a carboxylic acid to a primary amine losing one carbon; aniline reacts instantly with bromine water to give the tribromo product because -NH2 strongly activates all three o/p ring positions.]

Preparation from benzal chloride: benzal chloride (C6H5CHCl2, a gem-dihalide) is hydrolysed by boiling with aqueous NaOH (or with an aqueous suspension of CaCO3, a milder base that avoids further reaction of the sensitive aldehyde product):

C6H5CHCl2 + 2NaOH → C6H5CHO (benzaldehyde) + 2NaCl + H2O

(The gem-dihalide first hydrolyses to an unstable gem-diol, C6H5CH(OH)2, which spontaneously loses water to give the aldehyde.)

Reaction with HCN: benzaldehyde's electrophilic carbonyl carbon is attacked by the cyanide ion nucleophile (from HCN, often catalysed by a trace of base/KCN) to form the corresponding cyanohydrin:

C6H5CHO + HCN → C6H5-CH(OH)-CN (mandelonitrile / benzaldehyde cyanohydrin)

Cannizzaro reaction: benzaldehyde has NO hydrogen on the carbon adjacent to the carbonyl (the ring carbon takes that position and has no removable acidic H) — so it cannot form an enolate and cannot undergo the aldol condensation that aldehydes with α-hydrogens undergo. Instead, when treated with concentrated NaOH, two molecules of benzaldehyde undergo an intermolecular oxidation-reduction (disproportionation): a hydride ion is transferred directly from one molecule to the carbonyl carbon of the other. One molecule is reduced to benzyl alcohol while the other is oxidised to sodium benzoate:

2C6H5CHO + conc. NaOH → C6H5CH2OH (benzyl alcohol) + C6H5COONa (sodium benzoate)

--- OR ---

(a) Schmidt reaction: a carboxylic acid reacts with hydrazoic acid (HN3, generated in situ from NaN3 and conc. H2SO4) in the presence of concentrated H2SO4. The acid is degraded, losing its carbonyl carbon as CO2, to give a primary amine with one carbon less than the acid:

RCOOH + HN3 --conc. H2SO4--> RNH2 + CO2 + N2

…

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