Q.Complete the following reactions - [1+1+1=3]
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Start your 14-day free trial to unlock the full solution →(a) Amine + acid chloride -> N-substituted amide (Schotten-Baumann-type acylation, pyridine mops up HCl). (b) 1-degree aliphatic amine + HNO2 -> alcohol + N2 + H2O (diazonium salt is too unstable to isolate). (c) Aniline + excess Br2 water -> 2,4,6-tribromoaniline precipitate (no catalyst needed, ring highly activated).
(a) C2H5NH2 + CH3COCl: This is an N-acylation (amide-forming) reaction. The nucleophilic nitrogen of ethanamine attacks the electrophilic carbonyl carbon of acetyl chloride, displacing chloride. Pyridine is added as a mild base to neutralise/mop up the HCl by-product (as pyridinium chloride), driving the reaction forward and preventing protonation of the amine.
C2H5NH2 + CH3COCl --Pyridine--> CH3-CO-NH-C2H5 (N-ethylacetamide) + HCl.
(b) C2H5NH2 + HNO2 (generated in situ from NaNO2 + HCl): Primary aliphatic amines react with nitrous acid (the diazotisation-type reaction) to form a highly unstable aliphatic diazonium salt, which decomposes immediately (even at low temperature) with evolution of nitrogen gas, giving a mixture of products dominated by the alcohol (via an SN1-type carbocation pathway) along with water:
C2H5NH2 + HNO2 -> C2H5OH + N2(g) up + H2O.
(This instability of aliphatic diazonium salts, in contrast to the much more stable aromatic benzenediazonium salts, is itself used as a qualitative test to distinguish 1-degree aliphatic amines - brisk effervescence of N2 gas.)
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