Question of 108
Q.(a) Write the name and structural formula of the amide compound which produces ethanamine in the Hofmann bromamide reaction.
(b) Distinguish by a chemical test: Ethylamine and Aniline.
(c) CH3CH2CN --LiAlH4, ether / H3O+--> A --HNO2, 0°C--> B. Identify A and B.
Tripura TbseHigher Secondary (+2 Stage) Examination 2024Subjective· 3mImportance★★★★★
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Start your 14-day free trial to unlock the full solution →Hofmann bromamide degradation shortens the carbon chain by one carbon, so the amide needed to give ethanamine (2 carbons) must itself have 3 carbons — propanamide. Aromatic vs aliphatic 1° amines are distinguished by the bromine-water test. A nitrile reduced by LiAlH4 gives a 1° amine, which with HNO2 at 0°C evolves N2 and gives the corresponding alcohol.
- Hofmann bromamide reaction: R–CONH2 + Br2 + 4NaOH → R–NH2 + Na2CO3 + 2NaBr + 2H2O, and this removes the carbonyl carbon, so the resulting amine has one carbon fewer than the amide. To obtain ethanamine (CH3CH2NH2, 2 carbons), the amide must have 3 carbons: propanamide, CH3–CH2–CO–NH2. CH3CH2CONH2 --Br2, NaOH--> CH3CH2NH2 + Na2CO3 + NaBr + H2O
- Distinguishing test — bromine water: Aniline (an aromatic amine, strongly activated ring) reacts instantly with bromine water to give a white precipitate of 2,4,6-tribromoaniline, decolourising the bromine water without any catalyst. Ethylamine (an aliphatic amine) shows no such precipitate with bromine water. (Alternatively, with HNO2 at 0–5°C, ethylamine evolves brisk N2 gas bubbles with alcohol formation, while aniline forms a stable diazonium salt with no gas evolution at that temperature and instead gives an orange-red azo dye on coupling with alkaline β-naphthol.) …
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