Skip to content
Question

Q.C6H5CH2NH2C_6H_5CH_2NH_2 (benzylamine) on heating with CHCl3CHCl_3 and alcoholic KOH gives foul smell of (A) C6H5CH2OHC_6H_5CH_2OH (B) C6H5CH2NCC_6H_5CH_2NC (C) C6H5CH2CNC_6H_5CH_2CN (D) C6H5CH2ClC_6H_5CH_2Cl

CBSECBSE Class XII Board 2020MCQ· 1mImportance★★★★★
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

Benzylamine undergoes the carbylamine reaction (isocyanide test) with chloroform and alcoholic KOH, producing benzyl isocyanide (C6H5CH2NCC_6H_5CH_2NC), which has a characteristic foul smell. The correct option is (B).

Concept and Intuition

This question tests your knowledge of a classic reaction in organic chemistry: the carbylamine reaction (also called the isocyanide test). It is a specific test for primary amines — and only primary amines.

When a primary amine is heated with chloroform (CHCl3CHCl_3) and a strong base like alcoholic KOH, it forms an isocyanide (also called a carbylamine). Isocyanides are notorious for their foul, penetrating smell — often described as "horrible" or "nauseating." This is the same reaction used in the lab to distinguish primary amines from secondary or tertiary amines.

The key point: benzylamine (C6H5CH2NH2C_6H_5CH_2NH_2) is a primary amine (the NH2NH_2 group is attached to a carbon that is not part of an aromatic ring, but it's still a primary amine). So it will undergo this reaction.

Let's work through the mechanism step by step.


Step-by-Step Solution

1. Identify the reactant type

Benzylamine has the structure C6H5CH2NH2C_6H_5CH_2NH_2. The NH2NH_2 group is attached to a CH2CH_2 group, which is attached to a benzene ring. This is a primary aliphatic amine (the nitrogen is bonded to exactly one carbon atom). That is the only requirement for the carbylamine reaction.

2. Recall the carbylamine reaction

The general reaction is:

R−NH2+CHCl3+3KOH→ΔR−NC+3KCl+3H2OR-NH_2 + CHCl_3 + 3KOH \xrightarrow{\Delta} R-NC + 3KCl + 3H_2O

Here, RR is an alkyl or aryl group (but note: the amine must be primary). The product is an isocyanide (R−NCR-NC), which has the functional group −NC-NC (isocyanide group). Isocyanides are also called carbylamines.

R−NH2+CHCl3+3KOH→ΔR−NC+3KCl+3H2OR-NH_2 + CHCl_3 + 3KOH \xrightarrow{\Delta} R-NC + 3KCl + 3H_2O

3. Apply to benzylamine

Substitute R=C6H5CH2R = C_6H_5CH_2 (benzyl group) into the reaction:

C6H5CH2NH2+CHCl3+3KOH→ΔC6H5CH2NC+3KCl+3H2OC_6H_5CH_2NH_2 + CHCl_3 + 3KOH \xrightarrow{\Delta} C_6H_5CH_2NC + 3KCl + 3H_2O

The product is benzyl isocyanide (C6H5CH2NCC_6H_5CH_2NC). This compound has the characteristic foul smell.

4. Check the options

  • (A) C6H5CH2OHC_6H_5CH_2OH — benzyl alcohol. This would come from hydrolysis of benzyl chloride, not from this reaction.
  • (B) C6H5CH2NCC_6H_5CH_2NC — benzyl isocyanide. This matches our product. …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.