Skip to content
NCERT Exemplar · Q30

Q.What is the product when C6H5CH2NH2C_6H_5CH_2NH_2 reacts with HNO2HNO_2?

Puducherry CbseShort· 2mImportance★★★★★
54% · 58/108 Questions
🔒 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 →

The reaction of benzylamine (C6H5CH2NH2C_6H_5CH_2NH_2) with nitrous acid (HNO2HNO_2) proceeds via diazotization followed by spontaneous decomposition to give benzyl alcohol (C6H5CH2OHC_6H_5CH_2OH) as the major product, along with nitrogen gas.

Concept and Intuition

This question tests your understanding of nucleophilic substitution reactions — specifically, the reaction of primary amines with nitrous acid. The key here is that HNO2HNO_2 is unstable and generated in situ (usually from NaNO₂ + dilute HCl). It reacts with a primary amine to form a diazonium salt.

But here’s the critical distinction:

  • Aromatic primary amines (like aniline, C6H5NH2C_6H_5NH_2) form stable diazonium salts at low temperatures (0–5°C), which can be used in coupling reactions.
  • Aliphatic primary amines (like benzylamine, C6H5CH2NH2C_6H_5CH_2NH_2) form highly unstable diazonium salts that immediately decompose, even at low temperatures, to give a carbocation — and then a mixture of products.

Benzylamine is special because it’s a benzylic primary amine: the –CH2NH2–CH_2NH_2 group is attached directly to a benzene ring. The resulting carbocation (C6H5CH2+C_6H_5CH_2^+) is resonance-stabilized, making it relatively stable and leading to a cleaner product than with simple alkyl amines.

Watch out

A common mistake is to treat benzylamine like an aromatic amine and expect a stable diazonium salt. Remember: the –NH2–NH_2 group is on an sp3sp^3 carbon, not directly on the ring — so it behaves as an aliphatic primary amine, not an aromatic one.

Step-by-Step Solution

1. Formation of nitrous acid

HNO2HNO_2 is prepared in the reaction mixture by mixing sodium nitrite with a dilute acid (typically HCl or H2SO4H_2SO_4):

NaNO2+HCl→HNO2+NaClNaNO_2 + HCl \rightarrow HNO_2 + NaCl

2. Diazotization of benzylamine

The primary amine group reacts with HNO2HNO_2 to form an unstable diazonium salt:

C6H5CH2NH2+HNO2+HCl→[C6H5CH2N2+Cl−]+2H2OC_6H_5CH_2NH_2 + HNO_2 + HCl \rightarrow [C_6H_5CH_2N_2^+Cl^-] + 2H_2O

This is the same type of reaction as with any primary amine — the –NH2–NH_2 group is converted to –N2+–N_2^+.

3. Spontaneous decomposition

Unlike aromatic diazonium salts, this aliphatic diazonium salt is extremely unstable and decomposes instantly, even at 0°C, releasing nitrogen gas:

[C6H5CH2N2+]→C6H5CH2++N2↑[C_6H_5CH_2N_2^+] \rightarrow C_6H_5CH_2^+ + N_2 \uparrow

The loss of N2N_2 is driven by the formation of an extremely stable N≡NN\equiv N triple bond.

4. Carbocation reacts with water …

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.