Q.Acid anhydride on reaction with primary amine gives compound having a functional group _____.
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ALKYLATION: successive reaction with R-X climbs 1 to 2 to 3 degree amine to quaternary ammonium salt. ACYLATION: primary/secondary amines + acetyl chloride or acetic anhydride (pyridine present) give an N-alkyl acetamide; aniline + benzoyl chloride/NaOH giving N-phenylbenzamide is specifically the SCHOTTEN-BAUMANN REACTION. REACTION WITH NITROUS ACID (NaNO2 + HCl, in situ) distinguishes all three amine classes AND aliphatic from aromatic: primary ALIPHATIC amines give an unstable alkyl diazonium salt that instantly loses N2 to the alcohol; primary AROMATIC amines at 273-278 K give a diazonium salt that is reasonably stable short-term (this specific step is DIAZOTISATION, feeding the next unit's diazonium-salt chemistry); SECONDARY amines give a yellow, water-insoluble N-nitrosoamine oil (LIEBERMANN'S NITROSO TEST); TERTIARY aliphatic amines give a s …
Acylation of a primary amine by an acid anhydride produces an amide. …
Acylation of a primary amine by an acid anhydride produces an amide.
An acid anhydride reacts with a primary amine by nucleophilic acyl substitution: the amine's lone pair attacks the carbonyl carbon of the anhydride, displacing a carboxylate/carboxylic acid and forming an N-substituted amide: …
- CBSE 2025Set ANNUAL1 markMCQQ.The compound that reacts with nitrous acid to give yellow oily liquid is ________.(a) N-methylaniline(b) Nitro benzene(c) N,N-dimethyl aniline(d) Aniline
›Reveal solutionSolution
Nitrous acid reacts differently with the three classes of aromatic amines; only the secondary amine, N-methylaniline, gives the diagnostic yellow oily liquid (an N-nitrosamine) — this is a classic distinguishing test for 1°, 2°, and 3° amines.
Reaction of amines with HNO2 (generated in situ from NaNO2+HCl, at 0–5°C):
- Primary aromatic amine (aniline, option d): forms a benzenediazonium chloride, C6H5N2+Cl−, a colourless/pale-yellow crystalline solid in cold solution — not an oily liquid.
- Secondary aromatic amine (N-methylaniline, option a): the N-H hydrogen is replaced by the nitroso group (−N=O), giving N-methyl-N-nitrosoaniline, C6H5N(CH3)−N=O — this N-nitrosamine is a characteristic yellow oily liquid. …
- CBSE 2024Set ANNUAL1 markMCQQ.When aniline reacts with acetic anhydride, the product formed is :(a) p-aminoacetophenone(b) o-aminoacetophenone(c) acetanilide(d) m-aminoacetophenone
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Aniline undergoes N-acylation with acetic anhydride: the amine nitrogen's lone pair attacks the anhydride's carbonyl carbon, displacing acetate, to give the amide acetanilide.
Aniline, C6H5NH2, has a nucleophilic nitrogen lone pair that attacks the electrophilic carbonyl carbon of acetic anhydride, (CH3CO)2O, in a nucleophilic acyl substitution reaction. One acetyl group is transferred to nitrogen (displacing acetate/acetic acid as the leaving group), converting the -NH2 into an amide -NHCOCH3 group: C6H5NH2+(CH3CO)2O→C6H5NHCOCH3 (acetanilide)+CH3COOH The product, N-phenylacetamide, is commonly called acetanilide, and this specific N-acetylation reaction is also used industrially/in the lab to protect (and mildly deactivate) the -NH2 group before performing further electrophilic aromatic sub …
- CBSE 2022Set ANNUAL1 markMCQQ.Acid anhydride on reaction with primary amine gives compound having a functional group _____.(a) amide(b) nitrile(c) secondary amine(d) imine
›Reveal solutionSolution
Acylation of a primary amine by an acid anhydride produces an amide.
An acid anhydride reacts with a primary amine by nucleophilic acyl substitution: the amine's lone pair attacks the carbonyl carbon of the anhydride, displacing a carboxylate/carboxylic acid and forming an N-substituted amide: …
- CBSE 2020Set ANNUAL1 markMCQQ.The number of moles of methyl iodide required to prepare tetramethyl ammonium iodide from 1 mole of methyl amine is/are:(a) 1(b) 2(c) 3(d) 4
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Converting a primary amine to a quaternary ammonium salt by exhaustive methylation consumes 3 moles of CH₃I per mole of amine.
Methylamine, CH3NH2, has one methyl group and two N–H bonds. Exhaustive (excess) alkylation with methyl iodide replaces both remaining N–H hydrogens and then alkylates the resulting tertiary amine's lone pair to form the quaternary ammonium salt: …
- CBSE 2018Set ANNUAL1 markMCQQ.Oxidation of aniline with acidified potassium dichromate gives :(a) benzaldehyde(b) p-benzo quinone(c) benzyl alcohol(d) benzoic acid
›Reveal solutionSolution
Vigorous oxidation of aniline with acidified potassium dichromate (K2Cr2O7/H+) oxidises the ring, converting aniline into p-benzoquinone.
Aniline's strongly activating −NH2 group makes the ring very susceptible to oxidative attack. Acidified dichromate (a strong oxidising agent) oxidises aniline not at a side chain (there is none) but at the ring itself, removing the amino nitrogen as part of the process and installing two carbonyl groups at the para positions to give p-benzoquinone (C6H4O2). Benzaldehyde (a) and benzoic acid (d) would arise from oxidation of a methyl/aldehyde side chain (a …
- CBSE 2017Set ANNUAL1 markMCQQ.When primary amine reacts with CHCl3 in alcoholic KOH, the product is _______.(a) aldehyde(b) alcohol(c) cyanide(d) an isocyanide
›Reveal solutionSolution
Primary amine + CHCl3/alcoholic KOH is the carbylamine reaction, giving a foul-smelling isocyanide.
This is the carbylamine (isocyanide) test, characteristic of primary amines only (both aliphatic and aromatic): the amine, chloroform and alcoholic KOH react to form an isocyanide (carbylamine) with a distinctive foul/offensive smell, along with KCl and water:
RNH2+CHCl3+3KOH→RNC+3KCl+3H2O
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- CBSE 2016Set ANNUAL1 markMCQQ.Which of the following amines yield foul smelling product with haloform and alcoholic KOH?(a) Ethylamine(b) Diethylamine(c) Triethylamine(d) Ethylmethylamine
›Reveal solutionSolution
The carbylamine reaction (foul-smelling isocyanide) is given only by primary amines.
When a primary amine reacts with chloroform (CHCl3) in the presence of alcoholic KOH, it forms an isocyanide (carbylamine), which has an extremely unpleasant, foul odour — this is the carbylamine test, specific to primary amines only (both aliphatic and aromatic).
RNH2+CHCl3+3KOH→RNC+3KCl+3H2O
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